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BIBLIOGRAPHY

Abad, P., Favery, Rosso, B.M., and Castagnone-Sereno, P. 2003. Root-knot nematode

parasitism and host response: molecular basis of a sophisticated interaction.

Mol. Plant Pathol. 4: 217–224.

Abad, P., Gouzy, J., Aury, J.M., Castagnone-sereno, P., Danchin, E.G., Deleury, E.,

Perfus-Barbeoch, L., Anthouard, V., Artiguenave, F. and Blok, V.C. 2008.

Genome sequence of the metazoan plant parasitic nematode Meloidogyne

incognita. Nature Biotechnol. 26: 909-915.

Abbasi, Hisamuddin, Akhtar, A and Sharf, R. 2014. Pathogenicity of varying

inoculum levels of Meloidogyne incognita infecting Vigna radiata and

management by fly ash application. 2nd International Conference on

Agricultural & Horticutural Sciences, Hyderabad, Feb. 03-05, 2014, p. 231.

Abdel Latef, A.A., and He, C. 2011. Arbuscular mycorrhizal influence on growth,

photosynthetic pigments, osmotic adjustment and oxidative stress in tomato

plants subjected to low temperature stress. Acta. Physiol. Plant, 33: 1217-

1225.

Abdel-Fattah, G.M., Fatma Migahed, F.F. and Ibrahim, A.H. 2002. Interactive effects

of endomycorrhizal fungus Glomus etunicatum and phosphorous fertilization

on growth and metabolic activities of broad beans plants under drought stress

conditions. Pak. J. Biol. Sci. 5: 835-41.

Abo El-Nour, E.A.A. El-Sayed, A.A. and El-Bendary, A.A. 1996. Effect of

phosphate Bio-fertilizer (Phosphorein) on growth, yield and nutrient uptake

of faba bean plants. J. Agric. Sci. Mansoura Univ. 21: 477-483.

Absmanner, B., Stadler, R. and Hammes, U.Z. 2013. Phloem development in

nematode-induced feeding sites: The implications of auxin and cytokinin.

Front. Plant Sci. 8: 4-241.

Achatz, B., Von Ruden, D., Neumann, E., Pons-Kuhnemann, J., Kogel, K.H.,

Franken, P. and Waller, F. 2010. Root colonization by Piriformospora indica

enhances grain yield in barley under diverse nutrient regimes by accelerating

plant development. Plant Soil, 333: 59-70.

Adesemoye, A., Torbert, H. and Kloepper, J. 2009. Plant growth-promoting

rhizobacteria allow reduced application rates of chemical fertilizers. Microb.

Ecol. 58: 921-929.

196

Bibliography

Adriano, D.C., Page, A.L., Elseewi, A.A., Chan, A.C. and Straughan, I.A. 1980.

Utilization and disposal of fly ash and other coal residues in terrestrial

ecosystem. A review. Environ. Qual. 9: 333-344.

Adriano, D.C., Weber, J., Bolon, N.S., Paramasivam, S., Bon-Junkoo and Sajwan,

K.S. 2002. Effects of high rates of coal fly ash on soil, turfgrass and ground

water quality. Water Air Soil Poll. 139: 365-385.

Adriano, D.C., Woodford, T.A. and Ciravolo, T.G. 1978. Growth and elemental

composition of corn and bean seedlings as influenced by soil application of

coal ash. J. Environ. Qual. 7: 416-421.

Agrawal, M. and Verma, M. 1997. Amelioration of SO2 phyto-toxicity in wheat

cultivars by modifying NPK nutrients. J. Environ. Manage. 49: 231-244.

Agarwala, S.C., Bisht, S.S. and Sharma, C.P. 1977. Relative effectiveness of certain

heavy metals in producing toxicity and symptoms of iron deficiency in

barley. Can. Bot. 55: 1299-1307.

Agugo, U.A. and Onimawo, I.A. 2009. Heat treatment on the nutritional value of

mung bean. Electronic J. Environ. Agric. Food Chem. 8: 924-930.

Ahemad, M. and Kibret, M. 2013. Mechanisms and applications of plant growth

promoting rhizobacteria: Current perspective. J. King Saud Univ. Sci. http: //

dx.doi.org /10.1016 /j.jksus.2013.05.001.

Ahmad, A. and Alam, M.M. 1997. Utilization of flyash and Paecilomyces lilacinus

for the control of Meloidogyne incognita. Int. J. Nematol. 7: 162-4.

Ahmed, S. 1989. Pathogenicity of Reniform Nematode; Rotylenchulus reniforms on

papaya (Carica papaya). Int. Nematol. Network Newsl. 6: 16-17.

Akhtar, H., Anita, S. and Shukla, P.K. 2005. Effects of initial inoculum levels of

Meloidogyne incognita on root-knot development and growth of Vigna

radiata cv. ML-1108. Indian J. Nematol. 35: 93-94.

Alagawadi, A.R. and Gaur, A.C. 1988. Associative effect of Rhizobium and

phosphate- solubilizing bacteria on the yield and nutrient uptake of chickpea.

Plant Soil 105: 241-246.

Ali, M.A., Trabulsi, I.Y. and Abd-Elsamea, M.E. 1981. Antagonistic interaction

between Meloidogyne incognita and Rhizobium leguminosarum on cowpea.

Plant Dis. 65: 432-435.

197

Bibliography

Aliasgarzad, N., Neyshabouri, M.R. and Salimi, G. 2006. Effects of arbuscular

mycorrhizal fungi and Bradyrhizobium japonicum on drought stress of

soybean. Biologia, 61: 324-328.

Al-Karaki, G.N., Hammad, R. and Rusan, M. 2001. Response of two tomato cultivars

differing in salt tolerance to inoculation with mycorrhizal fungi under salt

stress. Mycorrhiza, 11: 43-47.

Allen, M. F., Moore, T.S. and Christensen, M. 1980. Phytohormone changes in

Bouteloua gracilis infected by vesicular-arbuscular mycorrhizae. 1.

Cytokinin increases in the host plant. Can. J. Bot. 58: 37-374.

Allen, S.E., Grimshaw, M.H., Parkenson, J.A. and Quarmby, C. 1974. In: Chemical

analysis of ecological materials. Blackwell Scientific Publications, Oxford.

pp. 569.

Aloni, R. and Plotkin, T. 1985. Wound induced and naturally occurring regenerative

differentiation of xylem in Zea mays L. Planta, 163: 126-132.

Amaliotis, D., Therios, I. and Karatissiou, M. 2004. Effect of nitrogen fertilization on

growth, leaf nutrient concentration and photosynthesis in three peach

cultivars. ISHS, Acta Hort. 449: 36-42.

Amaranatha, B.S. and Krishnappa, K. 1989. Effect of different inoculum levels of

Meloidogyne incognita on sunflower. Int. Nematol. Newsl. 6: 9-10.

Ames, R.N., Reid, C.P.P. and Ingham, E.R. 1984. Rhizosphere bacterial population

responses to root colonization by a vesicular arbuscular mycorrhizal fungus.

New Phytol. 96: 555-563

Amora-Lazcano, E., Vazquez, M.M., and Azcon, R. 1998. Response of nitrogen-

transforming microorganisms to arbuscular mycorrhizal fungi. Biol. Fert.

Soils 27: 65-70.

Anderson, T.A., Guthrie, E.A. and Walton, B.T. 1993. Bioremediation in the

rhizosphere: plant roots and associated microbes clean contaminated soil.

Environ. Sci. Technol. 27: 2630-2636.

Andrade, G., Mihara, K.L. Linderman, R.G. and Bethlenfalvay, G.J. 1998. Soil

aggregation status and rhizobacteria in the mycorrhizosphere. Plant Soil 202:

89-96.

198

Bibliography

Andre, S., Galiana, A., Le Roux, C., Prin, Y., Neyra, M. and Duponnois, R. 2005.

Ectomycorrhizal symbiosis enhanced the efficiency of inoculation with two

Bradyrhizobium strains and Acacia holosericea growth. Mycorrhiza, 15:

357-364.

Anver, S. and Alam, M.M. 1997. Effect of root-knot and reniform nematodes alone

and in combination on the growth of pigeonpea. Nematol. Medit. 25: 13-15.

Anver, S., Shefta, T.C. and Alam, M.M. 1997. Reaction of pigeonpea accessions to

root-knot nematode, Meloidogyne incognita. International Chickpea and

Pigeonpea Newsletter, 4: 34-35.

Appel, J.A. and Lewis, S.A. 1984. Pathogenecity and reproduction of Hoplolaimus

columbus and Meloidogyne incognita on ‘Davis’ soybean. J. Nematol. 16:

349-355.

Araujo, F.F. 2008. Inoculacao de sementes com Bacillus subtilis, formulado com

farinha de ostras edesenvolvimento de milho, sojae algodao. Cienc. Agrotec.

32: 456-462.

Araujo, F.F., de Hungaria, M. and de-Arauojo, F.F. 1999. Nodulation and yield of

soybeans co-inoculated with Bacillus subtilis and Bradyrhizobium

japonicum/ Bradyrhizobium elkanii. Pesqui. Agropecu. Bras. 34: 1633-1643.

Arulbalachandran, D. and Mullainathan, L. 2009. Changes on protein and methionine

content of black gram (Vigna mungo (L.) Hepper) induced by gamma rays

and EMS. American-Eurasian J. Scientific Res. 4: 68-72.

Asghar, H.N., Zahir, Z.A., Arshad, M., and Khalig, A. 2002. Plant growth regulating

substances in the rhizosphere: microbial production and functions. Adv.

Agron. 62: 146-151.

Ashoub, A.H. and Amara, M.T. 2010. Biocontrol activity of some bacterial genera

against root-knot nematode Meloidogyne incognita. J. American Sci. 6: 321-

328.

Asimi, S., Gianinazzi-Pearson, V. and Gianinazzi, S. 1980. Influence of increasing

soil phosphorus levels on interactions between vesicular-arbuscular

mycorrhizae and Rhizobium in soybeans. Can. J. Bot. 58: 2200-2205.

Aslam, M., Hussain, N., Zubair, M., Hussain, S.B. and Baloch, M.S. 2010.

Integration of organic and inorganic sources of phosphorus for increased

productivity of mungbean (Vigna radiata). Pak. J. Agri. Sci. 47: 111-114.

199

Bibliography

Atayese, M.O. 2007. Field response of Groundnut (Arachis hypogaea L.) cultivars to

mycorrhizal inoculation and phosphorous fertilizer in Abeokuta, South West

Nigeria. American-Eurasian J. Agric. and Environ. Sci. 2: 16-23.

Atilano, R.A., Menge, J.A. and Vangundy, S.D. 1981. Interaction of Meloidogyne

arenaria and Glomus fasciculatum in grape. J. Nematol. 13: 52-57.

Auge, R.M. 2001. Water relations, drought and vesicular-arbuscular mycorrhizal

symbiosis. Mycorrhiza, 11: 3-42.

AVRDC. 1998. Proceedings of International Consultation Workshop on Mungbean.

7-11 September 1997 at New Delhi, India. AVRDC, Shanhua, Taiwan, 198 p

Azcon, R. 1987. Germination and hyphal growth of Glomus mosseae in vitro: effect

of rhizosphere bacteria and cell-free culture media. Soil Biol. Biochem. 19:

417-419.

Azcon, R., Rubio, R. and Barea, J.M. 1991. Selective interactions between different

species of mycorrhizal fungi and Rhizobium meliloti strains, and their effects

on growth, N2 -fixation (15N) and nutrition of Medicago sativa L. New

Phytol. 117: 399-404.

Azcon-Aguilar, C. and Barea, J.M. 1992. Interactions between mycorrhizal fungi and

other rhizosphere microorganisms. In: Mycorrhizal Functioning; an

Integrative Plant Fungal Process, (ed.) Allen, M.J. Chapman and Hall, New

York, NY. pp 163-198.

Azcon-Aguilar, C., Jaizme-Vega, M.C. and Calvet, C. 2002. The contribution of

arbuscular mycorrhizal fungi to the control of soil-borne plant pathogens. In:

Mycorrhizal Technology in Agriculture, (eds.) Gianinazzi, S., Schuepp, H.,

Barea, J.M. Haselwandter K Birkhauser, Switzerland, pp. 187-197.

Aziz, S. and Perveen, R. 2003. Effects of fly ash water extracts on growth and yield of

Solanum nigrum. 26th All India Botanical Society Conference, p. 91.

Babu, A.G. and Reddy, M.S. 2011. Dual inoculation of arbuscular mycorrhizal and

phosphate solubilising fungi contributes in sustainable maintenance of plant

health in fly ash ponds. Water Air Soil Pollut. 219: 3-10.

Backmann, P.A., Brannen, P.M. and Mahaffe, W.F. 1994. Plant response and disease

control following seed inoculation with Bacillus subtilis. In: Improving plant

productivity with rhizosphere bacteria, (eds.) Ryder, M.H. et al., CSIRO

Division of soils. Glen Osmond.

200

Bibliography

Badri, M., Soula, S., Huguet, T. and Aouani, M.E. 2010. Symbiotic performance of

Medicago ciliaris lines in association with different Sinorhizobium strains. J.

Ecobiotech. 2: 6-11.

Bagchi, S.S. and Jadhan, R.T. 2006. Pesticide dusting powder formulation using

flyash- a cost effective innovation. Indian J. Environ. Prot. 26: 1019-21.

Bagyaraj, D.J., Manjunath, A. and Reddy, D.D.R. 1979. Interaction of vesicular

arbuscular mycorrhizae with root-knot nematode in tomato. Plant Soil, 51:

397-403.

Baird, L.M. and Caruso, K.J. 1994. Development of root nodules in Phaseolus

vulgaris inoculated with Rhizobium and mycorrhizal fungi. Int. J. Plant Sci.

155: 633-639.

Baker, K.K and Cook, R.J. 1974. In: Biological control of plant pathogens. San.

Franscisco: Freemon. pp. 433.

Bansal, R.K. and Bajaj, A. 2003. Effect of volatile fatty acids on embryogenesis and

hatching of Meloidogyne incognita eggs. Nematol. Medit. 31: 135-140.

Barea, J.M., Andrade, G., Bianciotto, V., Dowling, D., Lohrke, S., Bonfaute, P.,

O’Gara, F. and Azcon Aguilare, C. 1998. Impact of arbuscular mycorrhiza

formation of Pseudomonas strains used as inoculants for biocontrol of soil-

borne fungal plant pathogens. Appl. Environ. Microbiol. 64: 2304-2307.

Barea, J.M., Azcon, R. and Azcon-Aguilar, C. 2002. Mycorrhizosphere interactions to

improve plant fitness and soil quality. Antonie van Leeuwenhoek 81: 343-

351.

Barker, K.R. and Huisingh, D. 1970. Histopathological investigations of the

antagonistic interaction between Heterodera glycines and Rhizobium

japonicum on soybean. Phytopathology, 60: 1282-1283.

Barker, K.R., Huising, D. and Johnston, S.A. 1972. Antagonistic interaction between

Heterodera glycines and Rhizobium japonicum on soybean. Phytopathology,

62: 1201-1205.

Barker, K.R. and Olthof, T.H.A. 1976. Relationships between nematode population

densities and crop responses. Annu. Rev. Phytopathology, 14: 327-353.

201

Bibliography

Bartschi, H., Gianinazzi-Pearson, V. and Vegh, I. 1981. Vesicular-arbuscular

mycorrhiza formation and root rot disease (Phytopthora cinnamomi)

development in Chamaecyparis lawsoniana. Phytopathology, 102: 213-218.

Bashan, Y. and de-Bashan, L.E. 2005. Bacteria/plant growth-promotion. In:

Encyclopedia of Soils in the Environment, (Ed.) Hillel, D. Oxford, UK:

Elsevier. Vol. 1, pp. 103-115.

Bass, R. and Kupier, D. 1989. Effect of vesicular-arbuscular mycorrhizal infection

and phosphate on Plantago major sp. pleosperma in relation to internal

cytokinin concentration. Plant Physiol. 76: 211-215.

Baszynski, T., Warchodowa, M., Krupa, Z. Tukendorf, A., Krol, M. and Wolinska,

D.Z. 1980. “The effect of magnesium deficiency on photochemical activities

of rape and buck wheat chloroplasts,” Zeitschrift fur Pflanzenphysiologie,

99: 295.

Baum, C., Hrynkiewicz, K., Leinweber, P. and Meissner, R. 2006. Heavy metal

mobilization and uptake by mycorrhizal and non-mycorrhizal willows (Salix

x dasyclados). J. Plant Nutr. Soil Sci. 169: 516-522.

Becker, J.O., Zavaleta-Mejia, E., Colbert, S.F., Schroth, M.N., Weinhold, A.R.,

Hancock, J.G. and Van Gundy, S.D. 1988. Effects of rhizobacteria on root-

knot nematodes and gall formation. Phytopathology, 78: 1466-1469.

Behnke, H.D. and Schulz, A. 1980. Fine structure, pattern of division, and course of

wound phloem inColeus blumei. Planta, 357-365.

Beille, L. 1898. Sur less alterations produities par 1. Heterodera redicicola surles

raciness du Papaya gracilis. Compt. Rend. Assoc. Franc. Ananc. Sci. 27:

413-416.

Bennett, A.E. and Bever, J.D. 2007. Mycorrhizal species differentially alter plant

growth and response to herbivory. Ecology, 88: 210-218.

Berg, R.H., Fester, T. and Taylor, C.G. 2009. Development of the root-knot

nematode feeding cell. In: Cell Biology of Plant Nematode Parasitism, (eds.)

Berg, R.H., Taylor, C.G., Berlin, Heidelberg: Springer, 115-152.

Bergersen, F.J. 1971. Biochemistry of symbiotic nitrogen fixation. A. Rev. PI.

Physiol. 22: 121.

202

Bibliography

Bergeson, G.B. 1966. Mobilization of minerals to the infection site of root-knot

nematodes. Phytopathology, 56: 1287-1289.

Bhagawati, B. and Phukan, P.N. 1993. Pathogenicity of root-knot

nematode, Meloidogyne incognita on pea. Indian J. Nematol. 21: 141-144.

Bhagyaraj, D.J., Manjunath, A. and Reddy, D.D.R. 1979. Interaction of vesicular

arbuscular mycorrhizae with root-knot nematodes on tomato. Pl. Soil, 51:

379-403.

Bharti, B., Matte, D.B., Badole, W.P. and Deshmukh, A. 2000. Effect of fly ash on

yield, uptake of nutrients and quality of green gram grown on Vertisol. J.

Soils Crops, 10: 122-124.

Bhat, A.I. and Krishnappa, K. 1989. Effects of initial inoculum levels

of Meloidogyne on growth and development of groundnut. Int. Nematol.

Network Newslett. 6: 22-24.

Bhat, M.I., Rashid, A., Faisul-ur- Rasool., Mahdi, S.S., Haq, S.A and Bhat, R.A.

2010. Effect of Rhizobium and vesicular-arbuscular mycorrhizae fungi on

green gram (Vigna radiata L. Wilczek) under temperate conditions. Res. J.

Agric. Sci. 1: 113-118.

Bhat, M.Y. 1999. Studies on histopathological transformations induced by

Meloidogyne incognita in Bittergourd (Momordica charantia). Ph.D. Thesis

AMU. Aligarh published.

Bhat, M.Y., Fazal, M. and Hisamuddin, 2009. Effect of Meloidogyne inconita Race-1

in the functioning of rhizobial nodules on black gram, Vigna radiata. Indian

J. Nematol. 39: 59-64.

Bhatti, D.S. and Jain, R.K. 1977. Estimation of loss in okra, tomato and brinjal yield

due to Meloidogyne incognita. Indian J. Nematol. 7: 37-41.

Bi, Y.L., Li, X.L., Christie, P., Hu, Z.Q. and Wong, M.H. 2003. Growth and nutrient

uptake of arbuscular mycorrhizal maize in different depths of soil overlying

coal fly ash. Chemosphere, 50: 863-869.

Bianciotto, V., Minerdi, D., Perotto, S., and Bonfante, P., 1996. Cellular interactions

between arbuscular mycorrhizal fungi and rhizosphere bacteria, Protoplasma,

193: 123-131.

203

Bibliography

Bilski, J.J., Alva, A.K. and Sajwan, K.S. 1995. Fly ash In: “Soil Amendments and

Environmental Quality” (ed.) Rechicigl, J.E. Lewis Publishing, Boca Raton,

FL. pp. 327-363.

Bin, L., Guan-li, X., Soad, A. and Coosemans, J. 2005. Suppression of Meloidogyne

javanica by antagonistic and plant growth-promoting rhizobacteria. J.

Zhejiang Univ. Sci. 6: 491-501.

Bin, L., Smith, D.L. and Ping-Qui, F. 2000. Application and mechanism of silicate

bacteria in agriculture and industry. Guizhou. Sci. 18: 43-53.

Bird, A.F. 1962. The inducement of giant cells by Meloidogyne javanica.

Nematologica, 8: 1-10.

Bird, A.F. 1969. Changes associated with parasitism in nematodes (V). Ultra structure

of the stylet exudation and dorsal oesophageal gland contents of female

Meloidogyne incognita. J. Parasit. 55: 337-345.

Bird, A.F. and Loveys, B.R. 1975. The incorporation of photosynthates by

Meloidogyne javanica. J. Nematol. 7: 111-113.

Biswas, J.C., Ladha, J.K. and Dazzo, F.B. 2000. Rhizobial inoculation influences

seedling vigor and yield of rice. Agron. J. 92: 880-886.

Blee, K.A. and Anderson A.J. 2000. Defense responses in plants to arbuscular

mycorrhizal fungi. In: Current Advances in Mycorrhizae Research, (eds.)

Podila, G.K., Douds, D.D. Minnesota, USA: The American

Phytopathological Society, 27-44.

Blessing, I.A. and Gregory, I.O. 2010. Effect of processing on the proximate

composition of the dehulled and undehulled mungbean (Vigna radiata (L.)

Wilczek) flours. Pak. J. Nutr. 9: 1006-1016.

Bonanomi, A., Wiemken, A., Boller, T. and Salzer, P. 2001. Local induction of a

mycorrhiza-specific class III chitinase gene in cortical root cells of Medicago

truncatula containing developing or mature arbuscules. Plant Biol. 3: 194-

199.

Bopaiah, B.M., Reddy, D.D.R. and Patel, R.B. 1976. Effect of nematicides on

nodulation and nitrogen fixation in mungbean. Indian J. Nematol. 6: 156-

160.

204

Bibliography

Borah, A. and Phukan, P.N. 2000. Effect of VAM fungus, Glomus fasciculatum and

root-knot nematode, Meloidogyne incognita on brinjal. Journal of the

Agricultural Society of North-East India. 13: 212-214.

Brannen, R. 1995. Production of antibiotics from Bacillus subtilis and their effect on

fungal colonies of various crops. Transactions of British Mycological Society

65: 203-209.

Bridge, J. 1981. Nematode. In: Nematode Pest Control in Tropical Grain Legumes.

(eds.) Ward, A., Mercer, S.L. and Howe, V. Center for Overseas Pests

Research, London, pp. 111-125

Broadbent, P., Baker, K.F.M., Franks, N. and Holland, J. 1977. Effect of Bacillus sp.

on increased growth of seedlings in steamed and non-treated soil.

Phytopathology, 67: 1027-1034.

Budi, S.W., Van Tuinen, D., Martinotti, G. and Gianinazzi, S. 1999. Isolation from

the Sorghum bicolor mycorrhizosphere of a bacterium compatible with

arbuscular mycorrhiza development and antagonistic towards soil borne

fungal pathogens. Appl. Environ. Microbiol. 65: 5148-5150.

Burd, G.I., Dixon, D.G. and Glick, B.G. 1998. Plant growth promoting bacteria that

decrease heavy metal toxicity in plants. Applied Environ. Microbiol. 64:

3663-3669.

Burr, T.J., Schroth, M.N. and Suslow, T.V. 1978. Increased potato yields by treatment

of seed pieces with specific strains of Pseudomonas fluorescens and

Pseudomonas putida. Phytopathology, 68: 1377-1383.

Butt, M.S. and Batool, R. 2010. Nutritional and functional properties of some

promising legumes protein isolates. Pak. J. Nutr. 9: 373-379.

Byrne, J.M., Pesacreta, T.C. and Fox, J.A. 1977. Development and structure of the

vascular connection between the primary and secondary root of Glycine max

(L.). Merr. Am. J. Bot. 64: 960-965.

Caetano-Anolles, G., Crist-Estes, D.K. and Bauer, W.D. 1988. Chemotaxix of

Rhizobium melilotito to the plant flavones luteolin requires functional

nodulation genes. J. Bacteriol. 170: 3164-3169.

Cai, Z.Q., Wang, W.H., Yang, J. and Cai, C.T. 2009. Growth, photosynthesis and

root reserpine concentrations of two Rauvolfia species in response to a light

gradient. Ind. Crop Prod. 30: 220-226.

205

Bibliography

Caillaud, M. 2008. Root-knot nematodes manipulate plant cell functions during a

compatible interaction. J. Plant Physiol. 165: 104-113.

Calloway, D.H., Murphy, S.P. and Bunch, S. 1994. In: User’s Guide to the

International Minilist Nutrient Database. Department of Nutritional Sciences,

University of California, Berkeley, C.A.

Cardoso, I.M. and Kuyper, T.W. 2006. Mycorrhizas and tropical soil fertility. Agric.

Ecosyst. Environ. 116: 72-84.

Caron, M. 1989. Potential use of mycorrhizae in control of soil borne diseases. Can.

J. Plant Pathol-Revue Candienne De Phytopathologie 11: 177-179.

Caron, T.K.M., Hussey, R.S. and Roncadori, R.W. 1983. Interaction of vesicular

arbuscular mycorrhizal fungi and phosphorus with Meloidogyne incognita on

tomato. J. Nematol. 15: 410-417.

Castillo, P., Nico, A.I., Azcon-Aguilar, C., Del Rio Rincon, C., Calvet, C., and

Jimenez-Diaz, R.M. 2006. Protection of olive planting stocks against

parasitism of root-knot nematodes by arbuscular mycorrhizal fungi. Plant

Pathol. 55: 705-713.

Cavagnaro, T.R., Smith, F.A., Smith, S.E. and Jakobsen, I. 2005. Functional diversity

in arbuscular mycorrhizas: exploitation of soil patches with different

phosphate enrichment differs among fungal species. Plant Cell Environ. 28:

642-650.

Chahal, P.P.K. and Chahal, V.P.S. 1991. Effect of Rhizobium and root knot

nematodes on nitrogen fixation and nitrate utilization in chickpeas (Cicer

arietinum L.). J. Ravishankar Univ. 4-5(B): 43-45.

Chahal, P.P.K. and Singh, I. 1984. Effect of population density of Meloidogyne

incognita on pea in association with Rhizobium leguminosarum. J. Res. Pb.

Agri. Univ. 21: 311-315.

Chahal, P.P.K., Singh, I. and Chahal, V.P.S. 1983. Interaction between different

population levels of Meloidogyne incognita and Rhizobium on green gram. J.

Res. Pb. Agri. Univ. 20: 399-402.

Chahal, V.P.S. and Chahal, P.P.K. 1999. Final technical report of pl-480 Project.

Microbial control of plant parasitic nematodes, USDA.

206

Bibliography

Chakraborty, U. and Chakraborty, B.N. 1989. Interaction of Rhizobium

leguminosarum and Fusarium solani f. sp. pisi in pea affecting disease

development and phytoalexin production. Can. J. Bot. 67: 1698-1701.

Chakraborty, U. and Purkayastha, R.P. 1984. Role of rhizobitoxine in protecting

soybean roots from Macrophomina phaseolina infection. Can. J. Microbiol.

30: 285-289.

Chatterji, A. 1995. Management of phytonematodes by bioagents. In: Nematode

Management in Plants, (ed.) Trivedi, P.C. Jodhpur: Scientific Publishers, p.

197.

Chen, B.D., Christie, P. and Li, X. L. 2001. A modified glass bead compartment

cultivation system for studies on nutrient uptake by arbuscular mycorrhiza.

Chemosphere, 42: 185-192.

Chen X., Tang J.J., Zhi, G.Y. and Hu, S.J. 2005. Arbuscular mycorrhizal colonization

and phosphorus acquisition of plants: effects of coexisting plant species.

Appl. Soil Ecol. 28: 259-269.

Cheng, Y.H., Chuang, M.F. and Tsay, T.T. 2001. Interaction of vesicular-arbuscular

mycorrhizal fungus with root-knot nematode in muskmelon. Pathol. Bull. 10:

19-26.

Cheplick, G.P. and Faeth, S.H. 2009. In: The Ecology and Evolution of Grass-

Endophyte Symbiosis. Oxford University Press, New York, NY.

Cheung, K.C., Wong, J.P.K., Zhang, Z.Q., Wong, J.W.C., and Wong, M.H. 2000.

Revegetation of lagoon ash using legume species Acacia auriculiformis and

Leucaena leucocelpha. Environ. Pollut. 109: 75-82.

Chhabra, M.L., Singh, R.P. and Jalali, B.L. 1990. Studies on vesicular arbuscular

(VA) mycorrhiza impact on growth and development of cowpea (Vigna

unguiculata (L) Walp.). In: Proceedings of a National Conference on

Mycorrhiza. Haryana Agricultural University, Hisar, India, Feb. 14-16, pp.

239.

Chitwood, B.G. 1949. Root-knot nematodes. Part I- A revision of the genus

Meloidogyne goeldi, 1887. Proc. Helminthol. Soc. Wash. 16: 90-104.

Chitwood, D.J. 2002. Phytochemical based strategies for nematode control. Annu.

Rev. Phytopathol. 40: 221-49.

207

Bibliography

Chitwood, M.D. 1951. Notes on the physiology of Meloidogyne javanica (Treub,

1885). J. Parasitol. 37: 96-98.

Chou, R.O., and Schmitthenner, A.F. 1974. Effect of Rhizobium japonicum and

Endogone mosseae on virulence of Pythium ultimum and Phytophthora

megasperma var. sojae on soybeans. Plant Dis. Rept. 58: 221-225.

Christie, J.R. 1936. Development of root-knot nematode galls. Phytopathology, 26:

1-22.

Chylinska, K.M., Knypl, J.S. and Brzeski, M.W. 1972. Stimulated protein and RNA

synthesis in carrot infested with the northern root-knot nematode,

Meloidogyne hapla Chitwood. Bull. De, J’ Academic Polonaise des

Sciences, Seri des Science. Biologiques, 20: 209-212.

Cimen, V., Pirinc, A., Sagır, C., Akpinar, S. and Guzel, S. 2009. Effects of

solarization and vesicular arbuscular mycorrhizal fungi (VAM) on

phytopthora blight (Phytophthora capsici leonian) and yield in pepper. Afr.

J. Biotechnol. 8: 4884-4894.

Clark, R.B. and Zeto, S.K. 2000. Mineral acquisition by arbuscular mycorrhizal

plants. J. Plant Nutr. 23: 867-902.

Clark, W.C. 1964. Fungal-feeding nematodes as possible plant growth pathogens.

N.Z.J. Agric. Res. 7: 441-443.

Cobb, N.A. 1920. Transference of nematodes (Monochs) from place to place for

economic purposes. Science, 51: 640-641.

Cooper, K.M. and Grandison, G.S. 1986. Interaction of vesicular-arbuscular

mycorrhizal fungi and root-knot nematode on cultivars of tomato and white

clover susceptible to Meloidogyne hapla. Ann. Appl. Biol. 108: 555-565.

Cooper, K.M. and Grandison, G.S. 1987. Effects of vesicular arbuscular mycorrhizal

fungi on infection of tamarillo (Cyphomandra betacea) by Melodogyne

incognita in fumigated soil. Plant Dis. 71: 1101-1106.

Cope, F. 1962. The development of a soil from an industrial waste ash. In: Int. Soc.

Soil-Sci., Trans. Comm. IV, Palmerstown, New Zealand. pp. 859- 863.

Cordier, C., Pozo, M.J., Barea, J.M., Gianinazzi, S. and Gianinazzi-Pearson, V. 1998.

Cell defense responses associated with localized and systemic resistance to

208

Bibliography

Phytophthora induced in tomato by an arbuscular mycorrhizal fungus. Mol.

Plant Microbe Interact. 11: 1017-1028.

Creelman, R.A. and Mullet, J.E. 1997. Biosynthesis and action of jasmonates in

plants. Annu. Rev. Plant. Physiol. Plant Mol. Biol. 48: 355-381.

Daft, M.J. 1991. Influences of genotypes, rock phosphate and plant densities on

mycorrhizal development and the growth responses of five different crops.

Agri. Ecosyst. Environ. 35: 151-169.

Daft, M.J. and Nicholson, T.H. 1972. Effect of Endogone mycorrhizae on plant

growth IV. Quantitative relationship between the growth of the host

and development of the endophyte in tomato and maize. New Phytol.

71: 287-295.

Daft, M.J. and Okusanya, B.O. 1973. Effect of Endogone mycorrhiza on plant

growth. VI. Influence of infection on the anatomy and reproductive

development of four hosts. New Phytol. 72: 1333-1339.

Dalal, M.R. and Bhatti, D.S. 1989. Pathogenicity of Heterodera cajani in mung bean

cluster bean as affected by presence or absence of Rhizobium. Indian J.

Nematol. 19: 153-158.

Dalmau, J.L., Garau, M.A. and Felpo, M.T. 1990. Laboratory prediction of soluble

compounds before soil recycling of wastes. Int. J. Environ. Anal. Chem. 39:

141- 146.

Das, T.M. 1986. Editorial, International Air Pollution Workshop, Chicago, Illions,

USA Indian Biologist, 18: 45-46.

Dasgupta, D.R. and Deb, D.L. 1972. Studies on mineral absorption and tranloation in

tomato plants inoculated with root-knot nematodes, Meloidogyne javanica

and Meloidogyne arenaria separately and together with special reference to

P32. Phytopathol. A. 75: 74-81.

Dashti, N., Zhang, F., Hynes, R. and Smith, D.L. 1998. Plant growth promoting

rhizobacteria accelerate nodulation and increase nitrogen fixations activity by

field grown soybean [Glycine max (L) merr.] under short season condition.

Plant Soil, 200: 205-213.

Datta, S., Trivedi, P.C. and Tiagi, B. 1991. Development of root-knot nematode

Meloidogyne incognita in Vigna radiata and Cyamopsis tetragonaloba. Ind.

Phytopathol. 43: 493-499.

209

Bibliography

Daughtry, C.S.T., Walthall, C.I., Kim, M.S., Brown De Colstoun, E. and Mc murtrey,

J.E. and 2000. Estimating corn leaf chlorophyll concentracion from leaf and

canopy reflectance. Rem. Sens. Environ. 74: 229-239.

Davies, F.T., Potter, J.R. and Linderman, R.G. 1993. Drought resistance of

mycorrhizal pepper plants independent of leaf P-concentration-response in

gas exchange and water relations. Physiol. Plantarum, 87: 45-53.

Davies, P.J. 1995. In: Plant Hormones. Physiology, Biochemistry and Molecular

Biology. 2nd (ed.) Kluwer, Academic Publication Drodrecht. Netherland, pp.

1-12.

Davis, R.A. and Jenkins, W.R. 1960. Histopathology of gardenia (Gardenia

jasminoides veitchi) infected with three species of Meloidogyne.

Nematologica, 5: 228-230.

Davis, R.M., Menge, J.A. and Erwin, P.C. 1979. Influence of Glomus fasciculatum

and soil phosphorus on Verticillium wilt of cotton. Phytopathology, 69: 453-

456.

Dawar, S. Tariq, M. and Zaki, M.J. 2008. Application of Bacillus species in control

of Meloidogyne javanica (Treub) Chitwood on cowpea and mash bean.

Pakistan J. Bot. 40: 439-444.

De Guiran, G. 1960. Etude comparative de la penetration des larves de Meloidogyne

incognita (Treub, 1885) Chitwood, 1949, Meloidogyne incognita acrita

Chitwood, 1949 dans les racinus des plantes hotes et non hots. Resultants

preliminaries. Meded. Landb Horesch. Opzoek Stns Gent. 25: 1047-1056.

De la Pena, E., Echeverria, S.R., Putten, W.H. van der., Freitas, H. and Moens, M.

2006. Mechanism of control of root-feeding nematodes by mycorrhizal fungi

in the dune grass Ammophila arenaria. New Phytol. 169: 829-840.

Demir, S. and Akkopru, A. 2005. Use of arbuscular mycorrhizal fungi for biocontrol

of soilborne fungal plant pathogens. In: Biological Control of Plant Disease,

(eds.) Chincholkar, S.B., Mukerji, K.G. Howarth, New York, pp 17-37.

De Mooy, C.J. and Pesek, J. 1966. Nodulation responses of soybeans to added

phosphorus, potassium and calcium salts. Agron. J. 58: 275-280.

Dehne, H.W. 1982. Interactions between vesicular-arbuscular mycorrhizal fungi and

plant pathogens. Phytopathology, 72: 1115–1119.

210

Bibliography

Del Val, C., Barea J.M. and Azcon-Aguilar, C. 1999. Diversity of abuscular

mycorrhizal fungus populations in heavy-metal-contaminated soils. Appl.

Environ. Microbiol. 65: 718-723.

Demeterio, J.L., Ellis, J.R. and Paulsen, G.M. 1972. Nodulation and nitrogen fixation

by two soybean varieties as affected by phosphorus and zinc nutrition.

Agron. J. 64: 566-568.

Deo, B. 2004. Heavy metal accumulation by plant species from a coal mining

area in Orissa. J. Environ. Biol. 25: 163-166.

Deshwal, V.K., Pandey, P., Kang, S.C. and Maheshwari, D.K. 2003. Rhizobia as a

biological control agent against soil borne plant pathogenic fungi. Ind. J.

Exp. Biol. 41: 1160-1164.

Dey, R., Pal, K.K., Bhatt, D.M. and Chauhan, S.M. 2004. Growth promotion and

yield enhancement of peanut (Arachis hypogaea L.) by application of plant

growth-promoting rhizobacteria. Microbiol. Res. 159: 371-394.

Dhawan, S.C. and Singh, S. 2011. Biological control activity of Arthrobotrys

oligospora against Meloidogyne incognita infesting okra. Indian J. Nematol.

41: 70-78.

Di Vito, M., Zaccheo, G., Della Gatta, C. and Catalano, F. 1996. Relationship

between initial population densities of Meloidogyne javanica and yield of

sunflower in microplots. Nematol. Medit. 24: 109-112.

Diederichs, C. 1987. Interaction between five endomycorrhizal fungi and the root-

knot nematode Meloidogyne javanica on chickpea under tropical conditions.

Tropical Agriculture, 64: 353-355.

Diedhiou, P.M., Hallmann, J., Oerke, E.C. and Dehne, H.W. 2003. Effects of

arbuscular mycorrhizal fungi and a non-pathogenic Fusarium oxysporum on

Meloidogyne incognita infestation of tomato. Mycorrhiza, 13: 199-204.

Dixit, G.P. 2005. Project Coordinator’s Report. All India Coordinated Research

Project on MULLARP, 4-6 May 2005, Acharya N.G. Ranga University of

Agriculture, Hyderabad.

Dobbelaere, S., Vanderleyden, J. and Okon, Y. 2003. Plant growth-promoting affects

of diazotrophs in the rhizosphere. Crc. Cr. Rev. Plant Sci. 22: 107-149.

211

Bibliography

Dollfus, R.P. 1946. Parsites des helminthes. In: “Encyclopedie Biologigue 27” (Paul

Lechevalier, ed.), 481 pp. Paris.

Doney, D.L. and Fife, J.M. and Whitney, E.D. 1970. The effect of the sugarbeet

nematode Heterodera schachtii on the free amino acids in resistant and

susceptible beta species. Phytopathology, 60: 1727-1729.

Dorhout, R., Gommers, F.J. and Kolloffel, C. 1993. Phloem transport of

carboxyfluorescein through tomato roots infected with Meloidogyne

incognita. Physiol. Mol. Plant Pathol. 43: 1-10.

Doyle, E.A. and Lambert, K.N. 2003. Meloidogyne javanica chrismate mutase 1 alters

plant cell development. Mol. Plant-Microbe Interact. 16: 123-131.

Drapeau, R., Fortin, J.A. and Cagnon, C. 1973. Anti fungal activity of Rhizobium.

Can. J. Bot. 51: 681-2.

Dropkin, V.H. 1972. Pathology of Meloidogyne galling, giant cell formation, effects

on host physiology. Eur. Mediterr. Plant Prot. Organ. (OEPP/EPPO) Bull. 6:

23-32.

Dropkin, V.H. 1980. In: “Introduction to Plant Nematology”, John Wiley and Sons,

New York, p.293.

Dropkin, V.H. and Nelson, P.E. 1960. The histopathology of root-knot nematode

infections in soybeans. Phytopathology, 50: 422-447.

Druzina, V.D., Miroshrachenko, E.D. and Chertov, O.D. 1983. Effects of industrial

pollution on nitrogen and ash content in meadow phytocoenotic plants. Bot.

Zh. 68: 1583.

Duddington, C.L. 1957. In: The Friendly Fungi. Faber and Faber. London, p. 188.

Duffy, B.K. and Weller, D.M. 1995. Use of Gaeumannomyces graminis var.

graminis alone and in combination with fluorescent Pseudomonas spp. to

suppress take-all of wheat. Plant Dis. 79: 907-911.

Duncan, L.W. 1991. Current options for nematode management. Annu. Rev.

Phytopathol. 29: 469-490.

Dunstan, W.A., Malajczuk, N. and Dell, B. 1998. Effects of bacteria on

mycorrhizal development and growth of container grown Eucalyptus

diversicolor F Muell. seedlings. Plant Soil 201: 241-249.

212

Bibliography

Ediz, S.A. and Dickerson, O.J. 1976. Life cycle pathogencity, histopathology, and

host range of race 5 of the barley root knot nematode. J. Nematol. 8: 228-

232.

Elbadry, M., Taha, R.M., Eldougdoug, K.A. and Gamal Eldin, H. 2006. Induction of

systemic resistance in faba bean (Vicia faba L.) to bean yellow mosaic

potyvirus (BYMV) via seed bacterization with plant growth promoting

rhizobacteria. J. Plant Dis. Protect. 113: 247-251.

El-Hadad, M.E., Mustafa, M.I., Salim, Sh. M., El-Tayeb, T.S., Mahyoob, A.E.A. and

Abdel Aziz, H. 2011. The nematicidal effect of some bacterial fertilizers on

Meloidogyne incognita in sandy soil. Braz. J. Microbiol. 42: 105-113.

El-Kalla, S.E., Mostafa, A.K., Leilah, A.A. and Awad, R.A. 1997. Mineral and bio-

phosphatic fertilization for inter-cropped faba bean and onion. Egypt. J.

Agric. Res. 77: 253-271.

El-Mogazi, D., Lisk, D.J. and Weinstin, L.H. 1988. A review of physical, chemical

and biological properties of fly ash and effects of agricultural systems. Sci.

Total Environ. 74: 1-37.

El-Sayed, S.A.M. 1999. Denitrification by guar Rhizobia strains in New Valley

Governorate. Egypt J.Soil Sci. 39: 223-236.

Elseewi, A.A., Bingham, F.T. and Page, A.L. 1978a. Growth and mineral composition

of lettuce and Swiss chard grown on fly ash amended soils. In:

Environmental Chemistry and Cycling Processes, (eds.) Adriano, D.C.,

Brisbin, I.L. Conf-760429, US Department of Commerce, Springfield, V.A.

pp. 568-581.

Elseewi, A.A., Bingham, F.T. and Page, A.L. 1978b. Availability of sulfur in fly ash

to plants. J. Environ. Qual. 7: 69-73.

Elsen, A., Declerck, S., and De Waele. D. 2001. Effects of G. intraradices on the

reproduction of the burrowing nematode (Rhadophalus similis) in dixenic

culture. Mycorrhiza, 11: 49-51.

Elsen, A., Gervacio, D., Swennen, R., and De Waele, D. 2008. AMF-induced

biocontrol against plant parasitic nematodes in Musa sp.: a systemic effect.

Mycorrhiza, 18: 251-256.

213

Bibliography

Elsen, A., Stephane Declerk and Dirk De Waele 2003. Use of root organ cultures to

investigate the interaction between Glomus intradices and Pratylenchus

coffeae. Appl. Environ. Microbiol. 69: 4308-4311.

El-Sherif, A.G., Refaei, A.R. and Gad, S.B. 2009. The role of different inoculum

levels of Meloidogyne javanica juveniles on nematode reproduction and host

response of peanut plant. Pak. J. Biol. Sci. 12: 551-553.

El-Sherif, A.G., Refaei, A.R., El-Nagar, M.E. and Hagar, M.M.S. 2007. Integrated

management of Meloidogyne incognita infecting eggplant by certain organic

amendments, Bacillus thuringiensis and oxamyl with reference to NPK and

total chlorophyll status. Plant Pathol. J. 6: 147-152.

Endo, B.Y. 2003. Atlas on ultrastructure of infective juveniles of the soybean cyst

nematode, Heterodera glycines. U.S. Department of Agriculture,

Agricultural Research Service.

Endo, B.Y. and Wergin, W.P. 1973. Ultrasructural investigation of cover roots during

early stages of infection by the root knot nematode, Meloidogyne incognita.

Protoplasma, 78: 365-379.

Enkhtuya, B., Poschl, M., and Vosatka, M. 2005. Native grass facilitates mycorrhizal

colonization and P uptake of tree seedlings in two anthropogenic substrates.

Water Air Soil Poll. 166: 217-236.

Epps, J.M. and Chambers, A.Y. 1962. Nematodes inhibit nodules on soybeans. Crops

and Soils, 15: 18.

Evans, R.J., Bauer, D.H., Sisak, K.A. and Ryan, P.A. 1974. The availability for the rat

of methionine and cystine combined in dry bean seed. J. Agric. Food Chem.

22: 130-133.

Everts, K.L., Sardanelli, S., Kratochvil, R.J., Armentrout, D.K. and Gallagher, L.E.

2006. Root-knot and root-lesion nematode suppression by cover crops,

poultry litter, and poultry litter compost. Plant Dis. 90: 487-492.

Farmer, E.E., Weber, H. and Vollenweider, S. 1998. Fatty acid signaling in

Arabidopsis. Planta, 206: 167-175.

Farzaneh, M., Wichmann, S., Vierheilig, H. and Kaul, H.P. 2009. The effects of

arbuscular mycorrhiza and nitrogen nutrition on growth of chickpea and

barley. Pflanzenbauwissenschaften, 13: 15-22.

214

Bibliography

Finlay, R.D., Ek, H., Odham, G. and Soderstrom, B. 1988. Mycelial uptake

translocation and assimilation of nitrogen from 15 N-labelled ammonium by

Pinus sylvestris plants infected with four different ectomycorrhizal fungi.

New Phytol. 110: 56-66.

Finlay, R.D. and Read, D.J. 1986. The uptake and distribution of phosphorus by

ectomycorrhizal mycelium. In: Physiology and Genetical Aspects of

Mycorrhizae, (eds.) Gianinazzi-Pearson, V. and Gianninazzi, S. INRA, Paris.

pp. 351-355.

Finley, A.M. 1981. Histopathology of Meloidogyne chitwoodi (Golden) on Russet

Burbank Potao. J. Nematol. 13: 486-491.

Firmin, J.L., Wilson, K.E., Rossen, L. and Johnston, A.W.B. 1986. Flavonoid

activation of nodulation gene in Rhizobim reversed by other compounds

present in plants. Nature, 324: 90-92.

Fiske, C.H. and Subbarow, Y. 1925. The colorimetric determination of phosphorus. J.

Biol. Chem. 66: 375-400.

Fitter, A. and Garbaye, J. 1994. Interactions between mycorrhizal fungi and other soil

organisms. Plant and Soil, 159: 123-132.

Florini, D.A. 1997. Nematodes and other pathogens of cowpea. In: “Advances in

Cowpea Research” (eds.) Singh, B.B., Mohan Raj, D.R., Dashiell, K.E.

Jakai, L.E.N. Proceedings of the 2nd World Cowpea Research Conference.

Copublication of IITA and JIRCAS. 3-7 September 1995, Accra, Ghana. p.

193-206.

Fomina, M.A., Alexander, I.J., Colpaert, J.V. and Gadd, G.M. 2005. Solubilization of

toxic metal minerals and metal tolerance of mycorrhizal fungi. Soil Biol.

Biochem. 37: 851-866.

Forge, T., Muehlchen, A., Hackenberg, C., Neilsen, G. and Vrain, T. 2001. Effects of

preplant inoculation of apple (Malus domestica Borkh.) with arbuscular

mycorrhizal fungi on population growth of the root-lesion nematode,

Pratylenchus penetrans. Plant Soil, 236: 185-196.

Fox, J.A. and Spasoff, L. 1972. Interaction of Hterods solanacearum and Endogone

gigantea on tobacco (Abstr.), J. Nematol. 4: 224-225.

Fracchia, S., Garcia-Romera, I., Godeas, A. and Ocampo, J.A. 2000. Effect of the

saprophytic fungus Fusarium osysporum on arbuscular mycorrhizal

215

Bibliography

colonization and growth of plants in greenhouse and field trials. Plant Soil,

223: 175-184.

Francis, R., Finlay, R.D. and Read, D.J. 1986. Vesicular-arbuscular mycorrhiza in

natural vegetation systems IV. transfer of nutrients in inter- and intra-specific

combinations of host plants. New Phytol. 102: 103-111.

Francl, L.J. 1993. Interactions of nematodes with mycorrhizae and mycorrhizal fungi.

In: Nematode Interactions, (ed.) Khan, M.W. Champan and Hall, London,

U.K., pp 203-216.

Francl, L.J. and Dropkin, V.H. 1985. Glomus fasciculatum, a week pathogen of

Heterodera glycines. J. Nematol. 17: 470-475.

Francois, L.E. 1984. Effect of excess boron on tomato yield, fruit size and vegetable

growth. J. Am. Soc. Hort. Sci. 109: 322-324.

Fredeen, A.L., Raab, T.K., Rao, I.M. and Terry, N. 1990. Effects of phosphorus

nutrition on photosynthesis in Glycine max (L.). Merr. Planta, 181: 399-405.

Fruhling, M., Roussel, H., Gianinazzi-Pearson, V., Puhler, A. and Perlick, A.M.

1997. The Vicia faba leghemoglobin gene VfLb29 is induced in root nodules

and in roots colonized by the arbuscular mycorrhizal fungus Glomus

fasciculatum. Mol. Plant-Microbe Interact. 10: 124-131.

Fujiyoshi, M., Kagawa, A., Nakatsubo, T. and Masuzawa, T. 2006. Effect of

arbuscular mycorrhizal fungi and soil developmental stages on herbaceous

plants growing in the early stage of primary succession on mount. Fuji. Ecol.

Res. 21: 278-284.

Fulekar, M.H., Naik, D.S. and Dave, J.N. 1983. Heavy metals in Indian coals and

corresponding fly ash and their relationship with particle size. Int. J. Environ.

Stud. 21: 179-182.

Gaillaud, M.C., Dubreuil, F., Quentin, M., Perfus-Barbeoch, L., Lecomte, P. and de

Almeida Engler, 2008. Root knot nematodes manipulate plant cell functions

during a compatible interaction. J. Plant Physiol. 165: 104-113.

Gaind, S. and Gaur, A.C. 1991. Thermo-tolerant phosphate solubilising

microorganisms and their interaction with mung bean. Plant Soil, 133: 141-9.

Gaind, S. and Gaur, A.C. 2002. Impact of fly ash phosphate solubilising bacteria on

soybean productivity. Bioresource Technol. 85: 313-315.

216

Bibliography

Galli, U., Schuepp, H., and Brunold, C. 1994. Heavy metal binding by mycorrhizal

fungi. Physiol. Plantarum, 92: 364-368.

Gamal, M. Yousif, 1979. Histopathological responses of four leguminous crops

infected with Meloidogyne incognita. J. Nematol. 11: 395-401.

Gamalero, E., Fracchia, L., Cavaletto, M., Garbaye, J., Frey-Klett, P., Varese, G. and

Martinotti, M. 2003. Characterization of functional traits of two fluorescent

pseudomonads isolated from basidiomes of ectomycorrhizal fungi. Soil Biol.

Biochem. 35: 55-65.

Garampalli, R.H., Sunanda Deene and Reddy, C.N. 2005. Infectivity and efficacy of

Glomus aggregatum and growth response of Cajanus cajan (L.) Mill sp. in

fly ash amended sterile soil. J. Environ. Biol. 26: 705-708.

Garbaye, J. 1994. Helper bacteria: a new dimension to the mycorrhizal symbiosis.

New Phytol. 128: 197-210.

Garg, R.N., Pathak, H. and Das, D.K. 2005. Use of fly ash and bio gas slurry for

improving wheat yield and physical properties of soil. Environ. Monit.

Assess. 107: 1-9.

Gaur, A. and Adholeya, A. 2004. Prospects of arbuscular mycorrhizal fungi in

phytoremediation of heavy metal contaminated soils. Curr. Sci. 86: 528-534.

Gaur, H.S., Ali, S.S. and Haseeb, A. 2003. Integrated nematode management in

pulses: approaches and opportunities. In: Pulses in New Perspective, (eds.)

Ali, M. and Shiv Kumar, ISPRD, Indian Institute of Pulses Research,

Kanpur. pp. 457-470.

Gaur, H.S., Singh, R.V., Kumar, S., Kumar, V. and Singh, J.V. 2001. Search for

nematode resistance in crops. In: A.I.C.R.P. Plant parasitic nematodes with

integrated approach for their control, I.A.R.I., New Delhi. pp. 84.

Gemma, J.N, Koske, R.E. and Roberts, E.M. 1997. Mycorrhizal fungi improve

drought resistance in creeping bentgrass. J. Turfgrass Science, 73: 15-29.

Gentili, F., Wall, L.G. and Huss-Danell, K. 2006. Effects of phosphorus and nitrogen

on nodulation are seen already at the stage of early cortical cell divisions in

Alnus incana. Ann. Bot. 98: 309-315.

217

Bibliography

Gerdemann, J.W. and Nicolson, T.H. 1963. Spores of mycorrhizal Endogone

extracted from soil by wet sieving and decanting. Trans. Br. Mycol. Soc. 46:

235-244.

Gergon, E.B., Miller, S.A., Halbrendt, J.M. and Davide, R.G. 2002. Effect of rice

root-knot nematode on growth and yield of yellow granex onion. Pl. Dis. 86:

1339-1344.

Gheysen, G. and Fenoll, C. 2002. Gene expression in nematode feeding sites. Annu.

Rev. Phytopathol. 40: 191-219.

Gheysen, G. and Mitchum, M.G. 2011. How nematodes manipulate plant

development pathways for infection. Curr. Opin. Plant Biol. 14: 415-421.

Gheysen, G., Van der Eycken, W., Barthels, N., Karimi, M. and Van Montagu, M.

1996. The exploitation of nematode-responsive plant genes in novel

nematode control methods. Pestic. Sci. 47: 95-101.

Ghuman, G.S., Menon, M.P., Chandra, K., James, J., Adriano, D.C. and Sajwan, K.S.

1994. Uptake of multielements by corn from fly ash compost amended soil.

Water Air Soil Pollut. 72: 285-295.

Gianinazzi, S. and Gianinazzi-Pearson, 1988. Morphological integration and

functional compatibility between symbionts in vesicular arbuscular

mycorrhizal associations. In: Cell to cell signals in plant, animal and

microbial symbiosis, (eds.) Scannerini, S., Smith, D.C., Bonfante-Fasolo, P.,

Gianinazzi-Pearson. NATO ASI, series H: Cell Biology, Springer Verlag,

Berlin, 17: 73-84.

Gianinazzi-Pearson, V., Gollotte, A., Dumas-Gaudot, E., Franken, P., and

Gianinazzi, S., 1994. Gene expression and molecular modifications

associated with plant responses to infection by arbuscular mycorrhizal fungi.

In: Advances in Molecular Genetics of Plant Microbes Interactions, (eds.)

Daniels, M., Downic, J. A., and Osbourn, A. E., Kluwer, Dordrecht, The

Netherlands, pp. 179-186.

Gianinazzi-Person, M. and Gianinazzi, V. 1994. Biodiversity in arbuscular fungi.

Mycol. Res. 98: 705-715.

Giovannetti, M. and Mosse, B. 1980. An evaluation of techniques for measuring

vesicular arbuscular mycorrhizal infection in roots. New Phytol. 84: 489-500.

218

Bibliography

Gitte, R., Rai, P. and Patil, R.V. 1979. Chemotaxis of Rhizobium spp towards root

exudates of Cicer arietinum. Plant Soil, 50: 553-556.

Glazebrook, J. 2005. Contrasting mechanisms of defense against biotrophic and

necrotrophic pathogens. Annu. Rev. Phytopathol. 43: 205-227.

Glick, B.R. 1995. The enhancement of plant growth by free living bacteria. Can. J.

Microbiol. 41: 107-117.

Glick, B.R., Patten, C.L., Holguin, G. and Penrose, D.M. 1999. Biochemical and

Genetic Mechanisms Used by Plant Growth Promoting Bacteria. Imperial

College Press, London, Frankenberger WT, pp. 125-140.

Godfrey, G.H. and Oliveira, J. 1932. The development of root-knot nematode in

relation to root tissue of pineapple and cowpea. Phytopathology, 22: 325-

348.

Goellner, M., Wang, X., and Davis, E.L. 2001. Endo-ß-1,4-glucanase expression in

compatible plant-nematode interactions. Plant Cell, 13: 2241-2255.

Gonzalez-Chavez, M.C., Carrillo-Gonzalez, R., Wright, S.F. and Nichols, K.A. 2004.

The role of glomalin, a protein produced by arbuscular mycorrhizal fungi, in

sequestering potentially toxic elements. Environ. Pollut. 130: 317-323.

Good, J.M. 1968. Relation of plant parasitic nematodes to management practices. In:

Tropical Nematology, (eds.) Smart, G.C., Perry, V.G. University of Florida

Press, Gainesville, pp. 113-138.

Goodman, R.N., Kiraly, Z. and Zaitlin, M. 1967. The biochemistry and physiology of

infection. In: Plant Disease, Van Nostrand, Princeton, New York, p. 356.

Gopalan, C., Rama Sastri, B.V., Balasubramnaian, C.V., Narasinga Rao, B.S.,

Deosthale, Y.G. and Pant, K.C. 1989. Nutritive value of Indian foods. Indian

Council of Medical Research, Hyderabad, India. 156 p.

Gosling, P., Hodge, A., Goodlass, G. and Bending, G.D. 2006. Arbuscular

mycorrhizal fungi and organic farming. Agric. Ecosyst. Environ. 113: 17-35.

Goswami, B.K. and Rao, U. 1995. Association of Fusarium oxysporum and

Aspergellus flavus with egg masses of Meloidogyne incognita infecting

eggplant. Abstract. In: National Symp. On Nematode Management, IARI,

New Delhi, March 24-26.

219

Bibliography

Goyal, V., Angar, M.R. and Srivastava, D.K. 2002. Studies on the effect of flyash

treated soil on the increased protein contents in the seeds of Glycine max

(soyabean). Asian J. Chem. 14: 328-332.

Graciano, C., Goya, J.F., Frangi, J.L. and Guiamet, J.J. 2006. Fertilization with

phosphorus increases soil nitrogen absorption in young plants of Eucalyptus

grandis. Forest Ecol. Manage. 236: 202-210.

Gray, E.J. and Smith, D.L. 2005. Intracellular and extracellular PGPR: commonalities

and distinctions in the plant-bacterium signaling processes. Soil Biol.

Biochem. 37: 395-412.

Greco, N. and Di Vito, M. 1988. The importance of plant parasitic nematodes in food

legume in the Mediterranean region. In: Nematodes Parasitic to Cereals and

Legumes in Temperate Semi-Arid Regions (eds.) Saxena, M.C., Sikora, R.A.

and Srivastava, J.P. Aleppo, Syria: ICARDA, p 28-45.

Green, C.D. 1971. Mating and host finding behaviour of plant nematodes. In: Plant

Parasitic Nematodes, (eds.) Zuckerman, B.M., Mai, W.F. & Rohde, R.A,

Acad. Press, N.Y., Vol. II, p 247-266.

Grewal, K.S., Yadav, P.S. and Mehta, S.C. 2001. Direct and residual effect of flyash

application to soil on crop yield and soil properties. Crop Res. 21: 60-5.

Guetsky, R., Shtienberg, D., Elad, Y., Fischer, E. and Dinoor, A. 2002. Improving

biological control by combining biocontrol agents each with several

mechanisms of disease suppression. Phytopathology, 92: 976-985.

Gunning, B.E.S. and Pate, J.S. 1969. “Transfer cells” plants cells with wall

ingrowths, specialized in relation to short distance transport of solutes: their

occurrence, structure and development. Protoplasma, 68: 107-133.

Gunse, B., Poschenrieder, C. and Barcelo, J. 2000. The role of ethylene metabolism in

the short term responses to aluminium by root of two maize cultivars

different in aluminium resistance. Environ. Exp. Bot. 43: 73-81.

Gupta, A., Gopal, M. and Tilak, K.V. 2000. Mechanism of plant growth promotion by

rhizobacteria. Indian J. Exp. Biol. 38: 856-862.

Gupta, A.K. and Sinha, S. 2006. Role of Brassica juncea (L.) Czern. (var. Vaibhav) in

the phytoextraction of Ni from soil amended with fly ash: Selection of

extractant for metal bioavailability. J. Hazard. Mater. 136: 371-378.

220

Bibliography

Gupta, D.C., Parauthi, I.J. and Jain, R.K. 1995. Effect of initial inoculation levels of

Meloidogyne spp. on some cucurbitaceous crops. Indian J. Nematol. 25: 194-

199.

Gupta, D.K., Rai, U.N., Sinha, S., Tripathi, R.D., Nautiyal, B.D., Rai, P. and Inouhe,

M. 2004. Role of Rhizobium (CA−1) inoculation in increasing growth and

metal accumulation in Cicer arietinum L. growing under fly-ash stress

condition. Bull. Environ. Contam. Toxicol. 73: 424-431.

Gupta, D.K., Rai, U.N., Tripathi, R.D. and Inouhe, M. 2002. Impacts of fly ash on soil

and plant responses. J. Plant Res. 115: 401-409.

Gupta, M.L. and Janardhanan, K.K. 1991. Mycorrhizal association of Glomus

aggregatum with palmarosa enhances growth and biomass. Plant and Soil,

131: 261-263.

Ha, B.K., Hussey, R.S. and Boerma, H.R. 2007. Development of SNP assays for

marker-assisted selection of two southern root-knot nematode resistances

QTL in soybean. Crop Sci. 47: 73-82.

Habte, M., Zhang, Y.C. and Schmitt, D.P. 1999. Effectiveness of Glomus species in

protecting white clover against nematode damage. Can. J. Bot. 77: 135-139.

Haider, M.G., Dev, L.K. and Nath, R.P. 2003. Comparative pathogenicity of root-knot

nematode Meloidogyne incognita on different pulse crops. Indian J. Nematol.

33: 152-155.

Hai-Yan Li, Guo-Dong Yang, Huai-Rui Shu, Yu-Tao Yang, Bao-Xing Ye, Ikuo

Niishida and Cheng-Chao Zheng, 2006. Colonization by the arbuscular

mycorrhizal fungus Glomus versiforme induces a defense response against

the root-knot nematode Meloidogyne incognita in the grapevine (Vitis

amurensis Rupr.), which includes transcriptional activation of the class III

Chitinase Gene VCH3. Plant Cell Physiol. 47: 154-163.

Hajra, N., Shahina, F. and Firoza, K. 2013. Biocontrol of root-knot nematode by

arbuscular mycorrhizal fungi in Luffa cylindrical. Pak. J. Nematol. 31: 77-84.

Hallmann, J., Quadt-Hallmann, A. Miller, W.G., Sikora, R.A. and Lindow, S.E. 2001.

Endophytic colonization of plants by the bio control agent Rhizobium etli

G12 in relation to Meloidogyne incognita infection. Biol. Control, 91: 415-

422.

221

Bibliography

Halverson, L.J. and Handelsman, J. 1991. Enhancement of soybean nodulation by

Bacillus cereus UW85 in the field and in a growth chamber. Appl. Environ.

Microbiol. 57: 2767-2770.

Hamel, C. 2004. Impact of arbuscular mycorrhizal fungi on N and P cycling in the

root zone. Can. J. Soil Sci. 84: 383-395.

Hammermeister, A.M., Naeth, M.A. and Chanasyk, D.S. 1998. Implications of fly ash

application to soil for plant growth and food quality. Envir. Technol. 19:

143-152.

Hanowanik, S.B. and Osborne, W.W. 1975. Influence of Meloidogyne incognita on

the content of amino acids and nicotine in tobacco grown under genotobiotic

conditions. J. Nematol. 7: 332-336.

Harley, J.L. and Smith, S.E. 1983. Mycorrhizal symbiosis, Academic Press, New

York, pp. 483.

Hasan, N. 2003. Breeding for nematode resistance in forage legumes In: Plant

Diseases- Biocontrol Management, (ed.) Trivedi, P.C. Scientific Publishers,

Jodhpur, India pp. 213-231.

Hasan, N. and Jain, R.K. 1992. In: Recent Advances in Nematology, (ed.) Dwivedi,

B.K. Society, Allahabad, pp. 219-232.

Hasky-Gunther, K., Hoffmann-Hergarten, S. and Sikora, R.A. 1998. Resistance

against the potato cyst nematode Globodera pallida systemically induced by

the rhizobacteria Agrobacterium radiobacter (G12) and Bacillus sphaericus

(B43). Fundam. Appl. Nematol. 21: 511-517.

Hause, B., Maier, W., Miersch, O., Kramell, R. and Strack, D. 2002. Induction of

jasmonate biosynthesis in arbuscular mycorrhizal barley roots. Plant Physiol.

130: 1213-1220.

Hawkins, H.J., Johansen, A. and George, E. 2000. Uptake and transport of organic

and inorganic nitrogen by arbuscular mycorrhizal fungi. Plant Soil, 226: 275-

285.

Hayman, D.S and Mosse, B. 1971. Plant growth responses to vesicular arbuscular

mycorrhiza; growth of endogone inoculated plants in phosphate deficient

soils. New Phytol. 70: 19-27.

222

Bibliography

Haystead, A., Malajczuk, N. and Grove, T.S. 1988. Underground transfer of nitrogen

between pasture plants infected with vesicular-arbuscular mycorrhizal fungi.

New Phytol. 108: 417-423.

Hazarika, D.K., Das, K.K., Ddubey, L.N and Phookan, A.K. 2000. Effect of vesicular

arbuscular mycorrhizal (VAM) fungi and Rhizobium on growth and yield of

green gram [Vigna radiata (L.) Wilczek]. J. Mycol. Plant Pathol. 30: 424-

426.

Heald, C.M. 1969. Pathogenicity and histopathology of Meloidogyne graminis

infecting Tiffdwarf Bermuda grass root. J. Nematol. 1: 31-34.

Heald, C.M., Bruton, B.D. and Davis, R.M. 1989. Influence of Glomus intradices and

soil phosphorus on Meloidogyne incognita infecting cucumis milo. J.

Nematol. 21: 69-73.

Heck, W.W., Taylor, O.C., Adams, R., Bingham, G., Miller, H., Preston, E. and

Weinstein, L. 1982. Assessment of crop loss from ozone. J. Air Pollut.

Control Assoc. 32: 353-361.

Helder, T., Sturhum, E. and Olie, K. 1982. The toxicity and toxic potential of fly ash

from municipal incinerators assessed by means of a fish early life stage test.

Chemosphere, 11: 965-972.

Heungens, K. and Parke, J.L. 2001. Post infection biological control of oomycete

pathogens of pea by Burkholderia cepacia AMMDR1. Phytopathology, 91:

383-391.

Hisamuddin, 1992. Histopathological studies on roots of Luffa cylindrica infected

with Meloidogyne incognita. Ph.D. thesis, AMU, Aligarh.

Hisamuddin, 2008. Morphoanatomical studies on the root of Luffa ageptica infected

with root-knot nematode (Meloidogyne incognita). All India Botanical

Conference and International Symposium on Plant Biology Environmental

Changing Scenario. p. 64.

Hisamuddin, Niyaz, T. and Aziz, S. 2004. Effect of different initial inoculum

densities of root-knot nematode (Meloidogyne incognita) on growth and

yield of Eclipta alba. 27th All India Botanical Conference (Oct 29-30). P10.

Hisamuddin, Parveen, R. and Aziz, S. 2003. Effect of fly ash and root-knot disease

on Cicer arietinum. National Symposium on Plant Pathogens Diversity in

Relation to Plant Health. Jan. 16-18.

223

Bibliography

Hisamuddin, Parveen, R. and Niyaz, T. 2003. Studies on Garden Poppy (Papaver

rhoeas) infected with Meloidogyne incognita, 26th All India Botanical

Conference Dec. 29-31, p. 14.

Hisamuddin, parveen, R. and Niyaz, T. 2005. Studies on the interactive effect of

Meloidogyne incognita and Pythium phanidermatum on Phaseolus mungo.

Ind. J. Appl. Pure Bio. 20: 1-4.

Hobbie, E.A. 2006. Carbon allocation to ectomycorrhizal fungi correlates with

belowground allocation in culture studies. Ecol. 87: 563-569.

Hodgson, D.R. and Holliday, R. 1966. The agronomic properties of pulverized fuel

ash. Chem. Ind. 20: 785-790.

Hol, G.W.H. and Cook, R. 2005. An overview of arbuscular mycorrhizal fungi-

nematode interactions. Basic Appl. Ecol. 6: 489-503.

Hooper, D.J. 1985. Extraction of nematodes from plant material, pp. 51-58 In:

Laboratory Methods for Work with Plant and Soil Nematodes, (ed.) J.F.

Southey, Her Majesty’s Stationary Office, Lonon, p. 191.

Horne, A. 2000. Phytoremediation by constructed wetlands. In: Phytoremediation of

Contaminated Soil and Water, (eds.) Baneulos, T., Boca Raton, F.L. CRC

Press; p 13-40.

Hoth, S., Schneidereit, A., Lauterbach, C., Scholz-Starke, J. and Sauer, N.

2005. Nematode infection triggers the de novo formation of unloading

phloem that allows macromolecular trafficking of green fluorescent protein

into syncytia. Plant Physiol. 138: 383-392.

Hoth, S., Stadler, R., Sauer, N. and Hammes, U.Z. 2008. Differential vascularization

of nematode-induced feeding sites. Proceedings of the National Academy of

Sciences, USA 105: 12617-12622.

Hu, K., Li, J. and Webster, J.M. 1995. Mortality of plantparasitic nematodes caused

by bacterial (Xenorhabdus spp. and Photorhabdus luminescens) culture

media. J. Nematol. 27: 502-503.

Hu, K., Li, J. and Webster, J.M. 1996. 3, 5-Dihydroxy-4-isopropylstilbene: a selective

nematicidal compound from the culture filtrate of Photorhabdus

luminescens. Can. J. Plant Pathol. 18: 104. (Abstr.).

224

Bibliography

Hu, K., Li, J. and Webster, J.M. 1997. Quantitative analysis of a bacterial-derived

antibiotic in nematode-infected insects using HPLC-UV and TLC-UV

methods. J. Chromatogr. B 703: 177-183.

Hu, K., Li, J. and Webster, J.M. 1999. Nematicidal metabolites produced by

Photorhabdus luminescens (Enterobacteriaceae), bacterial symbiont of

entomopathohenic nematodes. Nematology, 1: 457-469.

Huang, CS. 1966. Host-parasite relationship of the root-knot nematode in edible

ginger. Phytopathology, 56: 755-759.

Huang, C.S. 1985. Formation, anatomy and physiology of giant cells induced by root-

knot nematodes. In: An Advanced Treatise on Meloidogyne, (eds.) Sasser,

J.N. and Carter, C.C. North Carolina State University Graphics, Raleigh. pp.

155-164.

Huang, C.S. and Maggenti, A.R. 1969. Mitotic aberrations and nuclear changes of

developing giant cells in Vicia faba caused by root-knot nematode,

Meloidogyne javanica. Phytopathology, 59: 447-455.

Huang, H.C. and Erickson, R.S. 2007. Effect of seed treatment with Rhizobium

leguminosarum on Pythium damping-off, seedling height, root nodulation,

root biomass, shoot biomass, and seed yield of pea and lentil. J. Phytopathol.

155: 31-37.

Huang, H.C., Erickson, R.S. and Hsieh, T.F. 2007. Control of bacterial wilt of bean

(Curtobacterium flaccumfaciens pv. flaccumfaciens) by seed treatment

with Rhizobium leguminosarum. Crop Protect. 26: 1055-1061.

Huang, S.P. 1986. Penetration, development, reproduction and sex ratio of

Meloidogyne javanica in three carrot cultivars, J. Nematol. 18: 408-412.

Huijie, N.C., Nghui Li Yuxhen and Wanberger, K. 2003. The impact of mung bean

research in China. Shanua AVDRC Publication No. 03-350. Working paper,

14: p. 26.

Hunter, A.H. 1958. Nutrient absorption and translocation of phosphorus as

influenced by the root-knot nematode (Meloidogyne incognita acrita). Soil

Sci. 86: 245-250.

Hussain, I., Burhanuddin, M. and Bhuiyan, M.K.J. 2010. Evaluation of

physiochemical properties of wheat and mung bean from Bangladesh.

Internet J. Food Saf. 12: 104-108.

225

Bibliography

Hussain, S.K.A. and Bora, B.C. 1998. Pathogenicity of Meloidogyne incognita on

French bean: (Phaseolus vulgaris L.). J. Agric. Sci. Soc. North East India, 8:

150-153.

Hussaini, B.M., Patil, R.B. and Reddy, D.D.R. 1979. Effect of Meloidogyne javanica

on nodulation and symbiotic nitrogen fixation in mungbean. Indian J.

Nematol. 6: 124- 130.

Hussey, R.S. 1985. Host-parasite relationships and associated physiological changes.

In: An Advanced Treatise on Meloidogyne, (eds.) Sasser, J.N. and Carter,

C.C. Vol. I Biology and Control. N. C. State University, Raleigh, North

Carolina. p. 143-153.

Hussey, R.S. and Grundler, F.M.W. 1998. Nematode parasitism of plants. In: The

Physiology and Biochemistry of Free-Living and Plant-Parasitic Nematodes,

(eds.) Perry, R.N. and Wright, D.T. (Wallingford, UK: CABI Publishing),

pp. 213-243.

Hussey, R.S. and Janssen, G.J.W. 2002. Root-knot nematodes: Meloidogyne species.

In: Plant resistance to parasitic nematodes, (eds.) Starr, J.L. Cook, R. and

Bridge, J. CAB Publishing, Wallingford, UK. pp 43-70.

Hussey, R.S. and Roncandori, R.W. 1982. Vesicular arbuscular mycorrhiza may limit

nematode activity and improve plant growth. Plant Dis. 66: 9-14.

Hussey, R.S. and Williamson, V.M. 1998. Physiological and molecular aspects of

nematode parasitism. In: Plant and Nematode Interactions, (eds.) Barker, K.

R., Pederson, G. A., Windham, G. L. Agronomy Monograph, 36: 87-108.

Ibrahim, I.K.A. and Lewis, S.A. 1985. Host-parasite relationships of Meloidogyne

arenaria and Meloidogyne incognita on susceptible soybean. J. Nematol. 17:

381-385.

Idorenyin, A.U., Michael, I.U. and Rufus, O.O. 2013. Pathogenicity of Meloidogyne

incognita race 1 on tomato as influenced by different arbuscular mycorrhizal

fungi and bioformulated Paecilomyces lilacinus in a dysteric cambisol soil. J.

plant prot. Res. 53: 71-78.

Ietswaart, J.H.I., Griffioen, W.A.J. and Ernst, W.H.O. 1992. Seasonality of VAM

infection in three populations of Agrostis capillaries (Gramineae) on soil

with or without heavy metal enrichment. Plant and Soil, 139: 67-73.

226

Bibliography

Ignoffo, C.M. and Dropkins, V.H. 1977. Deleterious effects of the thermostable toxin

of Bacillus thuringiensis on species of soil inhabiting, myceliophagus and

plant parasitic nematodes. J. Kans. Entomol. Soc. 50: 394.

Ilbas, A.I. and Sahin, S. 2005. Glomus fasciculatum inoculation improves soybean

production. Acta Agri. Scand. S. B-Soil Plant Sci. 55: 287-292.

Inam, A. 2007. Use of flyash in turnip (Brassica rapa L.) cultivation. Pollut. Res. 26:

39-42.

Ingham, R.E. 1988. Interactions between nematodes and vesicular arbuscular

mycorrhizae. Agric. Ecosyst. Environ. 24: 169-182.

Inouhe, M., Ninomiya, S., Tohoyama, H., Joho, M. and Murayama, T. 1994.

Different characteristics of roots in the cadmium tolerance and Cd binding

complex formation between mono and dicotyledonous plants. J. Plant Res.

107: 201-207.

Islam, R., Ayanaba, A. and Sanders, F.E. 1980. Response of cowpea (Vigna

unguiculata) to inoculation with VA-mycorrhizal fungi and to rock

phosphate fertilization in some unsterilized Nigerian soils. Plant Soil, 54:

107-117.

Ismail, A.E., El-Nagdi, W.M.A. and Yasin, M.Y. 2004. Histopathology of Chamomile

infected with Meloidogyne incognita and Rotylenchus reniformis. Pak. J.

Nematol. 22: 143-149.

Jacq, V.A. and Fortuner, R. 1979. Biological control of rice nematodes using

sulphate reducing bacteria. Rev. Nematol. 2: 41-51.

Jacquot-Plumey, E., van Tuinen, D., Chatagnier, O., Gianinazzi, S. and Gianinazzi-

Pearson, V. 2001. 25 S rDNA-based molecular monitoring of glomalean

fungi in sewage sludge-treated field plots. Environ. Microbiol. 3: 525-531.

Jain, R.K. and Gupta, D.C. 1991. Integrated management of root-knot nematode,

Meloidogyne incognita infecting Solanum melongena. Afro-Asian Journal of

Nematology, 1: 156-160.

Jain, R.K. and Hasan, N. 1998. Vesicular-arbuscular mycorrhizal (VAM) fungi-

nematode management and growth responses in forage crops. In: Recent

Advances in Plant Nematology, (ed.) Trivedi, P.C. CBS Publishers and

Distributors. Pvt. Ltd. New Delhi, India, pp. 201-215.

227

Bibliography

Jain, R.K. and Hasan, N. 1988. Role of vesicular-arbuscular mycorrhizal fungi and

nematode activities in forage production. Acta Bot. Indica, 16: 84-88.

Jain, R.K., Mathur, K.N. and Singh, R.V. 2007. Estimation of losses due to plant

parasitic nematodes on different crops in India. Indian J. Nematol. 37: 23-25.

Jain, R.K. and Sethi, C.L. 1988a. Interaction between vesicular-arbuscular mycorrhiza

and Meloidogyne incognita, Heterodera cajani on cowpea as influenced by

time of inoculation. Indian J. Nematol. 18: 89-93.

Jain, R.K. and Sethi, C.L.K. 1988b. Influence of endomycorrhizal fungi, Glomus

fasciculatum and Glomus epigaeus on penetration and development of

Heterodera cajani on cow pea as influenced by time of inoculation. Indian J.

Nematol. 18: 263-268.

Jaizme-Vega, M.C., Tenoury, P., Pinochet, J. and Jaumot, M. 1997. Interactions

between the root knot nematode Meloidogyne incognita and Glomus mosseae

in banana. Plant and Soil, 196: 27-35.

Jakobsen, I. and Nielsen, N.E. 1983. Vesicular Arbuscular Mycorrhiza in field-grown

crops. I. Mycorrhizal infection in cereals and peas at various time Soil

depths. New Phytol. 93: 401-413.

Jala, S. and Goyal, D. 2006. Fly ash as a soil ameliorant for improving crop

production-a review. Bioresource Technol. 97: 1136-1147.

Jalali, B.L. and Chand, H. 1990. Current trends in mycorrhizal research. Proc of the

national conference on mycorrhiza, HAU, Hisar, pp. 210.

Jamwal, J.S., Singh, K, Singh. T.K., Singh. J.P. and Singh, K. 1989. Effcct of

phosphorus and bio-fertilizers on yield and quality of blackgram. (Vigna

radiata (L.) Hepper). Annals of Agriultural Research, 10: 249-252.

Janisiewicz, W.J. 1988. Biocontrol of post harvest diseases of apples with antagonist

mixtures. Phytopathology, 78: 194-198.

Jastrow, J.D. and Miller, R.M. 1991. Methods for assessing the effects of biota on

soil structure. Agric. Ecosyst. Environ. 34: 279-303.

Jatala, P. 1986. Biological control of plant parasitic nematodes. Annu. Rev.

Phytopathol. 24: 453-489.

Java, B., Everett, R., O’Dell, T. and Lambert, S. 1995. Legume seeding trials in a

forested area of north-central Washington, Tree Planters’ Notes 46: 19-27.

228

Bibliography

Jenkins, W.R. and Taylor, D.P. 1967. Pin nematodes: Paratylenchus and sessile

nematodes: Cacopaurus. In: Plant Nematology. Reinhold Publishimg

Corporation, New York, p. 149.

Jing, Y., He, Z. and Yang, X. 2007. Role of soil rhizobacteria in phytoremediation of

heavy metal contaminated soils. J. Zhejiang Univ. Sci. B. 8: 192-207.

Joachim, H.J., Makoi, R. and Ndakidemi, P.A. 2009. The agronomic potential of

vesicular-arbuscular mycorrhiza (VAM) in cereals-aalegume mixtures in

Africa. African J. Microbiol. Res. 3: 664-675.

Johansen, D.A. 1940. In: Plant Microtechniques Mc Graw- Hill, New Book Co. New

York. pp. 523.

Johnson, N.C., Graham, J.H. and Smith, F.A. 1997. Functioning of mycorrhizal

associations along the mutualism-parasitism continuum. New Phytol. 135:

575-585.

Jonathan E.I., Kumar S., Devarajan K. and Rajendran G. 2001. Nematode pests of

commercial flower crops. In: Fundamentals of Plant Nematology, (ed.)

Jonathan E.I. Devi Publication, Trichy, India. pp. 20-48.

Jonathan, E.I. and Rajendran, G. 2000. Pathogenic effect of root-knot nematode,

Meloidogyne incognita on banana, Musa sp. Indian J. Nematol. 30: 13-15.

Joner, E.J. and Leyval, C. 1997. Uptake of 109Cd by roots and hyphae of a Glomus

mosseae/Trifolium subterranean mycorrhiza from soil amended with high

and low concentrations of cadmium. New Phytol. 135: 353-360.

Jones, F.C.W. and Nirula, K.K. 1963. Hatching tests and counts of primary galls in

assessment of nematicides against Meloidogyne spp. Pl. Pathol. 12: 148-154.

Jones, M.G.K. 1981. The development and function of plant cells modified by

endoparasitic nematodes. In: Plant Parasitic Nematodes, (eds.) Zuckerman,

B.M., Rohde, R.A. Vol. 3. New York: Academic Press, 255-279.

Jones, M.G.K. and Dropkin, V.H. 1976. Scanning electron microscopy of nematode

induced giant transfer cells. Cytobios. 15: 149-160.

Jones, M.G.K. and Goto, D.B. 2011. Root-knot nematodes and giant cells. In:

Genomics and Molecular Genetics of Plant–Nematode Interactions, (eds.)

Jones, J., Gheysen, G., Fenoll, C., Dordrecht: Springer, 83-100.

229

Bibliography

Jones, M.G.K. and Gunning, B.E.S. 1976. Transfer cells and nematode induced giant

cells in Helianthemum. Protoplasma, 87: 273-279.

Jones, M.G.K. and Northcote, D.H. 1972a. Multinucleate transfer cells induced in

coleus roots by the root-knot nematode, Meloidogyne arenaria. Protoplasma,

75: 381-391.

Jones, M.G.K. and Northcote, D.H. 1972b. Nematode-induced syncytium- a

multinucleate transfer cell. J. Cell Sci. 10: 789-809.

Jones, M.G.K. and Payne, H.L. 1978. Early stages of nematodes induced giant cell

formation in roots of Impatiens balsamina. J. Nematol. 10: 70-84.

Joshi, G., Siva Kumar, M. and Rajendran, G. 2003. Management of root-knot

nematode by Pseudomonas fluorescens in tomato. Indian J. Nematol. 33: 87-

88.

Joshi, S.D., Jadhav, A.S., Patil, M.B. and Kurandhar, B.P. 2000. Effect of organic

amendment and fly ash on root-knot disease of tomato. J. Maharashtra Agric.

Univ. 25: 84-85.

Jothi, G. and Sundarababu, R. 1997. Studies on the management of rot lesion

nematode, Pratylenchus zeae with endomycorrhiza fungus, Glomus

fasciculatum on maize. Indian J. Nematol. 27: 264-266.

Jothi, G., Rajeshwari, S. and Sundarababu, R. 1998. Interaction of vesicular-

arbuscular mycorrhizae with reniform nematode, Rotylenchulus reniformis

on ragi. Indian J. Nematol. 28: 145-149.

Jung, C. and Wyss, U. 1999. New approaches to control plant-parasitic nematodes.

Appl. Microbiol. Biotechnol. 51: 439-446.

Juwarkar, A. and Jambhulkar, H. 2008. Restoration of fly ash dumps through

biological interventions. Environ. Monit. Assess. 139: 355-365.

Kabi, M.S. 1983. Rhizobial interaction in the rhizosphere of soybean for nodule sites.

Zentralbla. Mikrobiol. 138: 269-275.

Kabir, Z. and Koide, R.T. 2000. The effect of dandelion or a cover crop on

mycorrhiza inoculum potential, soil aggregation and yield of maize. Agric.

Ecosyt. Environ. 78: 167-174.

230

Bibliography

Kalra, N., Jain, M.C., Joshi, H.C., Choudhary, R., Harit, R.C., Vatsa, B.K., Sharma,

S.K. and Kumar, V. 1998. Flyash as a soil conditioner and fertilizer.

Bioresource Technol. 64: 163-167.

Kamath, R.R. 1979. Trace elements concentrations in coal and corresponding fly ash.

Ind. J. Air Pollut. Cont. 2: 91-95.

Kanhear, R.S., Gupta, D.C. and Kum Kum, W. 1988. Effect of nematode inoculation

at different intervals and soil type or interrelationship between Meloidogyne

javanica and Rhizoctonia solani on cowpea. Indian J. Nematol. 18: 112-113.

Kaplan, D.T., Keen, N.T. and Thompson, I.J. 1980. Association of glyceollin with

incompatible response of soybean roots to Meloidogyne incognita. Physiol.

Plant Pathol. 16: 309-318.

Kapoor, R. 2008. Induced resistance in mycorrhizal tomato is correlated to

concentration of jasmonic acid. J. Bio. Sci. 8: 49-56.

Karagiannidis, N. and Hadjisavvazinoviadi, S. 1998. The mycorrhizal fungus Glomus

mosseae enhances growth, yield and chemical composition of a durum wheat

variety in 10 different soils. Nutr. Cycl. Agroecos. 52: 1-7.

Karanja, N.K., Mutua, G.K. and Kimenju, J.W. 2007. Evaluating the effect of

Bacillus and Rhizobium bio-inoculant on nodulation and nematode control in

Phaseolus vulgaris L. In: Advances in Integrated Soil Fertility Research in

Sub-Saharan Africa: Challenges and Opportunities, (eds.) Bationo, A.,

Waswa, B., Kihara, J. and Kimetu, J. Springer, Netherlands, pp 863-868.

Karpinski, S., Gabrys, H., Mateo, A., Karpinska, B and Mullineaux, P.M. 2003. Light

perception in plant disease defense signalling. Curr. Opin. Plant Biol. 6: 390-

396.

Karssen, G. and Moens, M. 2006. Root-knot nematodes. In: Plant Nematology, (eds.)

Perry, R.N. and Moens, M. Wallingford, CABI, pp. 59-88.

Kasab, A.S. and Taha, A.H.Y. 1990. Interaction between plant parasitic nematodes,

VAM, rhizobia and nematicide on Egyptian clover. Ann. Agric. Sci. 35: 509-

520.

Kehri, H.K. and Chandra, S. 2001. Performance of black gram with VAM

inoculation and phosphate fertilization. Philippine J. Sci. 130: 33-38.

231

Bibliography

Kellam, M.K. and Schenk, N.C. 1980. Interactions between a vesicular-arbuscular

mycorrhizal fungus and root-knot nematode on soybean. Phytopathology,

70: 293-296.

Kennedy, I.R., Choudhury, A.T.M.A. and Kecskes, M.L. 2004. Non-symbiotic

bacterial diazotrophs in crop-farming systems: can their potential for plant

growth promotion be better exploited? Soil Biol. Biochem. 36: 1229-1224.

Keuken, O. and Sikora, R.A. 1995. Biological control of root-knot nematode,

Meloidogyne incognita with the rhizosphere bacteria, Bacilllus subtilis and

bacterial production of toxic metabolites. Nematologica, 41: 315.

Khan, M.R. and Khan, M.W. 1996. Development of root-knot nematodes on cowpea

as influenced by sulphur dioxide. Nematol. Medit. 24: 33-35.

Khan, M.R. and Khan, M.W. 1994. Single and interactive effects of root-knot

nematode and coal smoke on okra. New Phytol. 126: 337-342.

Khan, A.A., Kausar, S. and Diva, I. 2007. Study of plant growth and yield of

underground stem crops in fly ash amended soil. Asian J. Environ. Pollut. 4:

87-91.

Khan, B., Fazal, M. and Siddiqui, Z.A. 1992. Biochemical response of some

pigeonpea cultivars to root-knot nematode, Meloidogyne incognita. Indian J.

Plant Pathol. 10: 35-40.

Khan, B., Khan, A.A. and Khan, M.R. 2003. Pathogenic variability among isolates of

Meloidogyne javanica on Capsicum annum. J. Nematol. 35: 430-432.

Khan, I.A., Ayub, N., Mirza, S.N., Nizami, S.M. and Azam, M. 2008. Synergistic

effect of dual inoculation (vesicular arbuscular mycorrhizae) on the growth

and nutrient uptake of Medicago sativa. Pak. J. Bot. 40: 939-945.

Khan, M.R. and Khan, S.M. 2001. Biomanagement of Fusarium wilt of tomato by

the soil application of certain phosphate solubilising microorganisms. Int. J.

Pest Man. 47: 227-231.

Khan, M.R. 2003. Effect of different inoculum levels of root-knot nematode,

Meloidogyne incognita race 2 on onion (Allium cepa). Indian J. Nematol. 33:

61-88.

Khan, M.R. 2007. Prospects of microbial control of root-knot nematodes infecting

vegetable crops. In: Biotechnology Plant Health Management, (eds.) Sharma,

232

Bibliography

M. and Singh, H.B. International Book Distribution Co., Lucknow, India.

pp. 659-690.

Khan, M.R. 2008. Plant Nematodes-Methodology, Morphology, Systematics,

Biology and Ecology, Science Publishers, New Hampshire, U.S.A. pp. 360.

Khan, M.R. and Ghadipur, M.H. 2004. Management of root-knot disease of some

solanaceous vegetables by soil application of fly ash. National Symposium

on Paradigms in Nematological Research for Biodynamic Farmings. Nov,

17-19. p. 92.

Khan, M.Q., Abbasi, M.W., Zaki, M.J. and Khan, S.A. 2010. Evaluation of Bacillus

thuringiensis isolates against root-knot nematode following seed application in

okra and mung bean. Pak. J. Bot. 42: 2903-2910.

Khan, M.R. and Jairajpuri, M.S. 2010a. Nematode infestations Part-I Food Crops,

(eds.) Khan, M.R., Jairajpuri, M.S. National Academy of Sciences, India. p.

325.

Khan, M.R. and Jairajpuri, M.S. 2010b. Nematode infestations Part-II Indusrial

Crops, (eds.) Khan, M.R., Jairajpuri, M.S. National Academy of Sciences,

India. p. 464.

Khan, M.R. and Khan, M.W. 1996. Effect of fly ash on plant growth and yield of

tomato. Environ. Pollut. 91: 105-111.

Khan, M.R. and Kounsar, K. 2000. Effect of seed treatment with certain bacteria and

fungi on the growth of mungbean and reproduction of Meloidogyne

incognita. Nematol. Medit. 28: 221-226.

Khan, M.R., Altaf, S., Mohidin, F.A., Khan, U. and Anwer, A. 2009. Biological

control of plant nematodes with phosphate solubilizing microorganisms. In:

Phosphate Solubilizing Microbes for Crop Improvement, (eds.) Khan, M.S.

and Zaidi, A.X. New York, USA. Nova Science Publisher Inc. pp. 395-426.

Khan, M.R., Khan, M.W. and Khan, A.A. 1996. Effect of Meloidogyne incognita on

dry weight, root gall and root nodulation of chickpea and cowpea cultivars,

Ann. App. Biol. (TAC-17 Suppl.) (U.K.). 128: 70-71.

Khan, M.R., Khan, M.W. and Singh, G.K. 1996. Effects of nickel and root-knot

nematode on the growth and protein content of chickpea. Nematol. Medit.

24: 87-90.

233

Bibliography

Khan, M.R., Khan, S.M. and Mohiddin, F.A. 2004. Biological control of Fusarial

wilts of chickpea through seed treatment with the commercial formulations

of Trichoderma harzianum and/or Pseudomonas fluorescens. Phytopathol.

Medit. 43: 20-25.

Khan, M.R., Khan, S.M., Mohiddin, F.A. and Askary, T.H. 2007. Effect of certain

phosphate solubilizing bacteria on root-knot nematode disease of mungbean.

In: Development in Plant and Soil Sciences, (eds.) Velazquez-perez, Kluwer,

E. Academic Publishers, pp. 314-346.

Khan, M.R., Kounsar, K. and Hamid, A. 2002. Effect of certain rhizobacteria and

antagonistic fungi on root-nodulation and root-knot nematode disease of

green gram. Nematol. Medit. 30: 85-89.

Khan, M.R., Mohiddin, F.A., Khan, S.M. and Khan, B. 2005. Effect of seed

treatment with certain biopesticides on root-knot of chickpea. Neamatol.

Medit. 32: 107-112.

Khan, M.S., Zaidi, A. and Wani, P.A. 2006. Role of phosphate solubilizing

microorganisms in sustainable agriculture-a review. In: Sustainable

Agriculture, (eds.) Lichtfouse, E., Navarrete, M., Debaeke, P., Veronique, S.,

Alberola, C. vol 5. Springer, Netherlands, pp. 551-570.

Khan, M.W. 1990. Biocontrol of plant nematodes in closer perspective. In: Progress

in Plant Nematology, (eds.) Saxena, S.K., Khan, M.W., Rashid, A. and Khan,

R.M. C.B.S. publishers and Distributors Pvt. Ltd. Delhi, pp. 367-382.

Khan, M.W. 1998. Present status of biological suppression of plant parasitic

nematodes. In: Biological Suppression of Plant Diseases, Phytonematodes

and Weeds. (eds.) Singh, S.P. and Hussaini, S.S. Project Directorate of

Biological Control, Banglore, India. pp. 118-127.

Khan, M.W. and Esfahani, M.N. 1990. Efficacy of Paecilomyces lilacinus for

controlling Meloidogyne javanica on tomato in green house in India. Pak. J.

Nematol. 8: 95-100.

Khan, M.W. and Khan, M.R. 1993. Relationship of plant pathogenic microbes with

air pollution. In: Frontiers in Applied Microbiology, (eds.) Mukerji, K.G. and

Singh, V.P. Vol. IV Meerut, India: Rastogi Publishers, 114-125.

Khan, M.R., Khan, M.W. and Singh, K. 1997. Management of root-knot disease of

tomato by the application of fly ash in soil. Plant Pathol.46: 33-43.

234

Bibliography

Khan, T.A. and Ashraf, M.S. 2005. Studies on the pathogenicity and life cycle of

Meloidogyne incognita and Meloidogyne javanica on lettuce (Lactuca

sativa). Sixth National Symposium on Sustainable Plant Protection

strategies: Health and Environmental Concerns, October 15-17, pp.117.

Khan, T.A. and Hussain, S.I. 1988. Effect of individual, concomitant and sequential

inoculations of Rhizobium, Rotylenchulus reniformis, Meloidogyne incognita

and Rhizoctonia solani on cowpea plant growth, disease development and

nematode multiplication. Indian J. Nematol. 18: 232-238.

Khan, T.A. and Husain, S.I. 1990. Studies on the effect of interactions of variable

inoculum levels of Rotylenchulus reniformis, Meloidogyne incognita and

Rhizoctonia solani on cowpea. Current Nematol. 1: 49-52.

Khaosaad, T., García-Garrido, J.M., Steinkellner, S. and Vierheilig, H. 2007. Talk-all

disease is systemically reduced in roots of mycorrhizal barley plants. Soil

Biol. Biochem. 39: 727-734.

Kheir, A.M., Amin, A.W., Hendy, H.H. and Mostafa, M.S. 2004. Effect of different

levels of Meloidogyne incognita on nematode reproduction and host response

of four banana cultivars under greenhouse conditions. Arab J. Pl. Prot. 22:

97-102.

Kim, K.Y., Jordan, D. and Mc Donald, G.A. 1998. Effect of phosphate solubilizing

bacteria and vesicular arbuscular mycorrhizae on tomato growth and soil

microbial activity. Biol. Fert. Soils, 26: 79-87.

Kinloch, R.A. 1982. The relationship between soil populations of Meloidogyne

incognita and yield reduction of soybean in the coastal plain. J. Nematol. 14:

162-167.

Kirkpatrick, J.D., Mai, W.F., Parker, K.G. and Fisher, E.G. 1964. Effect of

phosphorus and potassium nutrition of sour cherry on the soil population

levels of five plant parasitic nematodes. Phytopathology, 54: 706-712.

Kleinschmidt, G.D. and Gerdemann, J.W. 1972. Stunting of citrus seedlings in

fumigated nursery soils related to the absence of endomycorrhizae.

Phytopathology, 62: 1447-1453.

Klironomos, J.N., 2003. Variation in plant response to native and exotic arbuscular

mycorrhizal fungi. Ecology, 84: 2292-2301.

235

Bibliography

Kloepper, J.W. 1980. Enhanced plant growth by siderophores produced by plant

growth-promoting rhizobacteria. Nature, 286: 885-886.

Kloepper, J.W., Hume, D.J., Schner, F.M., Singleton, C., Tipping, B., Laliberte, M.,

Frauley, K., Kutchaw, T., Simonson, C., Lifshitz, R., Zaleska, I. and Lee, L.

1988. Plant growth promoting rhizobacteria on canola. Plant Dis. 72: 42-46.

Kloepper, J.W., Leong, J., Teintze, M. and Schroth, M.N. 1980. Pseudomonas

siderophores: A mechanism explaining disease suppressive soils. Curr.

Microbiol. 4: 317-320.

Koch, K.A., Hussey, R.S. and Roncandori, R.W. 1997. Interacions between

vesicular- arbuscular mycorrhizal fungi and plant pathogens.

Phytopathology, 77: 115-119.

Koenning, S.R., and Barker, K.R. 1985. Gnotobiotic techniques and plant-parasitic

nematodes. In: An Advanced Treatise on Meloidogyne, vol 2. (ed.) Raleigh,

N.C. North Carolina State University Graphics. Pp. 49-66.

Koide, R.T. and Schreiner, R.P. 1992. Regulation of vesicular arbuscular mycorrhizal

symbiosis. Annu. Rev. Plant Physiol. 43: 557-581.

Korayem, A.M. and Bondok Moawad, M.M.M. 2013. Damage threshold of root-knot

nematode, Meloidogyne arenaria on peanut in relation to date of planting

and irrigation system. Can. J. Plant Prot. 1: 117-124.

Korayem, A.M., Dawood, M.G. and Mohamed, M.M.M. 2009. Growth, yield and

chemical composition of sunflower seeds in soil infected with different

population densities of root knot nematode. Nematol. Medit. 37: 191-196.

Koshy, P.K., Sosamma, V.K. and Samuel, R. 1998. Interactive effect of VAM with

Radopholus similis on coconut seedlings. Nematology: Challenges and

Opportunities in 21st Century. Proceedings of the 3rd International

Symposium of Afro-Asian Society of Nematologists (TISAASN), Sugarcane

Breeding Institute (ICAR), Coimbatore, India, April 16-19, 106-110.

Kostoff, D. and Kendall, J. 1930. Cytology of nematode galls of Nicotiana roots.

Central Bakt., II Abt. 81: 89-91.

Kothari, S.K., Marschner, H. and Romheld, V. 1990. Direct and indirect effects of VA

mycorrhizal fungi and rhizosphere microorganisms on acquisition of mineral

nutrients by maize (Zea mays L.) in a calcareous soil. New Phytol. 116: 637-

645.

236

Bibliography

Kotze, A.C., Grady, O., Gough, J., Pearson, J.M., Bagnall, R., Kemp, D.H. and

Akhurst, R.J. 2005. Toxicity of Bacillus thuringiensis to parasitic and free-

living life stages of nematodes parasites of livestock. Int. J. Parasitol. 35:

1013-1022.

Krishna Prasad, K.S. 1991. Influence of a vesicular arbuscular mycorrhiza on the

development and reproduction of root-knot nematode affecting flue cured

tobacco. Afro Asian Journal of Nematology 1: 130-134.

Kruger, R.A. 2003. Successful use of coal ash in South Africa. In: Mat. X

Miedzynarodowej Konferencji, Popioly z energetyki” W-wa 14-17 XI 53-70,

(in Polish).

Krusberg, L.R. and Nielsen, L.W. 1958. Pathogenesis of root-knot nematodes to

Porto Rico variety of sweet potato. Phytopathology, 48: 30-39.

Kuchanwar , O.D., Matte, D.B. and Kene, D.R. 1977. Evaluation of graded doses of

fly ash and fertilizers on nutrient content and uptake of groundnut grown on

vertisol. J. Soils Crops, 7: 1-3.

Kuchanwar, O.D., Matte, D.B. and Kene, D.R. 1997. Effect of fly ash application on

physico-chemical properties of soil. J. Soils Crops, 7: 73-75.

Kulshreshtha, M. and Khan, M.W. 1999. Impact of fly ash application in soil on root

colonization by a VAM fungus and root nodulation by Rhizobium. Ind.

Phytopathol. 52: 185-187.

Kumar, A., Sarkar, A.K., Singh, R.P. and Sharma, V.N. 1998. Yield and trace metal

in rice (Oryza sativa) as influenced by fly ash, fertilizer and farmyard

manure application. Ind. J. Agri. Sci. 68: 590-592.

Kumar, M. and Pathak, K.N. 2004. Adverse effect of root-knot nematode,

Meloidogyne incognita on spinach beet, Beta vulgaris bengalensis and

Fenugreek, Trigonella foenum graecum. Indian J. Nematol. 34: 125-128.

Kumar, S. 2000. Pathogenic effect of root-knot nematode, Meloidogyne incognita on

tuberose, Polyanthus tuberose. Indian J. Nematol. 30: 109.

Kumar, V., Goswami, G. and Zacharia, A.K. 2001. Fly-ash use in agriculture: issues

and concerns. Technology demonstration projects commissioned by fly-ash

mission under technology information forecasting assessment council

(TIFAC) News and Views, pp 1-6.

237

Bibliography

Kumar, V.L., Singhal, A. 2009. Germinating seeds of the mung bean, Vigna radiata

(Fabaceae), as a model for the preliminary evaluation of cytotoxic effects of

drugs. Biocell, 33: 19-24.

Kumarimanimuthu, V.D. 2008. Effect of graded levels of lignite fly ash on nodulation

pattern of black gram cv. ADT-3. Legume Res. 31: 234.

Lahrmann, U. and Zuccaro, A. 2012. Opprimo ergo sum-evasion and suppression in

the root endophytic fungus Piriformospora indica. Mol. Plant Microbe.

Interact. 25: 727-737.

Lambais, M.R. 2000. Regulation of plant defense-related genes in arbuscular

mycorrhizae. In: Current Advances in Mycorrhizae Research, (eds.) Podilla,

G.K., Douds, D.D. Minnesota, USA: The American Phytopathological

Society, pp 45-59.

Lau, S.S.S. and Wong, J.W.C. 2001. Toxicity evaluation of weathered coal fly ash

amended manure compost. Water Air Soil Poll. 128: 243-254.

Lazaro, M., Cayo, R., Wstrella, D., Ronchel, M.C., Garcia, J.M., Wyke, L. and

Ramos, J.L. 2000. Survival of Pseudomonas putida KT2440 in soil and in

the rhizosphere of plants under greenhouse and environmental conditions.

Soil Biol. Biochem. 32: 315-321.

Lee, H., Ha, H.S., Lee, C.S., Lee, Y.B. and Kim, P.J. 2006. Fly ash effect on

improving soil properties and rice productivity in Korean paddy soil.

Bioresource Technol. 97: 1490-1497.

Lekberg, Y. and Koide, R.T. 2005. Is plant performance limited by abundance of

arbuscular mycorrhizal fungi? A meta-analysis of studies published between

1988 and 2003. New Phytol. 168: 189-204.

Lemanceau, P., and Alabouvette, C. 1991. Biological control of Fusarium diseases

by fluorescent Pseudomonas and nonpathogenic Fusarium. Crop Protec. 10:

279-286.

Leung, A. 2007. Better health with mostly Chinese herbs and food. Mungbean.

http://www.earthpower.com. 7/1/2009.

Leyval, C. Turnau, K., and Haselwandter, K. 1997. Effect of heavy metal pollution on

mycorrhizal colonization and function: Physiological, ecological and applied

aspects. Mycorrhiza, 7: 139-153.

238

Bibliography

Li, D. and Alexander, M. 1988. Co-inoculation with antibiotic-producing bacteria to

increase colonization and nodulation by rhizobia. Plant Soil, 108: 211-219.

Li, H.Y., Liu, R.J. and Shu, H.R. 2002. Interaction between AM fungi and

Meloidogyne incognita and their effects on the host plant grape. Acta

Horticult. Sin. 6: 510–514 (in Chinese with English abstract).

Lin, A.J., Zhang, X.H., Wong, M.H., Ye, Z.H., Lou, L.Q., Wang, Y.S. and Zhu, Y.G.

2007. Increase of multi-metal tolerance of three leguminous plants by

arbuscular mycorrhizal fungi colonization. Environ. Geochem. Hlth. 29:

473-481.

Lindner, R.C. 1944. Rapid analytical methods for some of the more common

inorganic constituents of the plant tissues. Plant Physiol. 19: 76-89.

Linderman, R.G. 1994. Role of vesicular arbuscular mycorrhiza fungi in biocontrol.

In: Mycorrhizae and Plant Health, (eds.) Pfleger, F.L. and Linderman, R.G.

pp. 1-26.

Linford, M.B. 1939. Attractiveness of roots and excised root tissue to certain

nematodes. Proc. Helm. Soc. Wash. 6: 11-18.

Linford, M.B. 1942. The transient feeding of root-knot nematode larvae.

Phytopathology, 32: 580-589.

Linford, M.B., Yap, F. and Oliveira, M. 1938. Reduction of soil populations of the

root-knot nematode during decomposition of organic matter. Soil Sci. 45:

127-141.

Littrell, R.H. 1966. Cellular response of Hibiscus esculentus to Meloidogyne

incognita acrita. Phytopathology, 57: 540-544.

Loveys, R.R. and Bird, A.F. 1973. The influence of nematodes on photosysnthesis in

tomato plants. Physiol. Plant Pathol. 3: 525-529.

Lowry, O.H., Rosenbrough, W.A., Far, A.L. and Randall, A.W. 1951. Protein

measurement with folin phenol reagent. J. Biol. Chem. 193: 265-275.

Luc, M., Sikora, R.A. and Bridge, J. In: Plant Parasitic Nematodes in Tropical and

Subtropical Agriculture CAB International, Wallingford, UK, pp. 871.

Lynch, J., Lauchli, A. and Epstein, E. 1991. Vegetative growth of common bean in

response to phosphorus nutrition. Crop Sci. 31: 380-387.

239

Bibliography

Mackinney, G. 1941. Absorption of light by chlorophyll solutions. J. Biol. Chem.

140: 315-322.

Madar, P., Edenofer, S., Boller, T., Wiemken, A. and Niggli, U. 2000. Arbuscular

mycorrhizae in a long term field trial comparing low-input (organic,

biological) and high-input (conventional) farming systems in a crop rotation.

Biol. Fert. Soils. 31: 150-156.

Mader, P., Fliessbach, A., Dubois, D., Gunst, L., Fried, P. and Niggli, U. 2002. Soil

fertility and biodiversity in organic farming. Science, 296: 1694-1697.

Mahalingam, R., Wang, G. and Knap, H.T. 1999. Polygalacturonase and

polygalacturonase inhibitor protein: gene isolation and transcription

in Glycine max–Heterodera glycines interactions. Mol. Plant–Microbe

Interact. 12: 490-498.

Mahanta, B and Phukan, P.N. 2000. Effect of Glomus fasciculatum on penetration

and development of Meloidogyne incognita on blackgram. Journal of the

Agricultural Science Society of North-East India. 13: 215-217.

Majumdar, A. and Mukherji, S.N. 1983. Trace elements in Indian fly ash. J. Fuel Sci.

Technol. 2: 80-81.

Malek, R.B. and Jenkins, W.R. 1964. Aspects of the host-parasite relationships of

nematodes and hairing vetch. New Jersey Agr. Exp. Sta. Bull. 813: 31.

Manjunath, A. and Bagyaraj, D.J. 1984. Response of pigeon pea and cowpea to

phosphate and dual inoculation with vesicular-arbuscular mycorrbiza and

Rhizobium. Tropical Agriculture (Trinidad), 61: 48-52.

Mankau, R. and Minteer, R.M. 1962. Reduction of soil populations of the citrus

nematode by addition of organic matter. Plant Dis. Rep. 46: 375-378.

Manku, R. 1981. Microbial control of nematode. In: Plant Parasitic Nematodes vol. 3

(eds.) Zuckerman, B.M. and Rohde, R.A. Academic press. New York.

Mar Vazquez, M., Sonia Cesar, Rosario Azcon, Jose M. Barea. 2000. Interactions

between arbuscular mycorrhizal fungi and other microbial inoculants

(Azospirillum, Pseudomonas, Trichoderma) and their effects on microbial

population and enzyme activities in the rhizosphere of maize plants. Appl.

Soil Ecol. 15: 261-272.

240

Bibliography

Marchiol, L., Miceli, F., Pinosa, M. and Zerbi, G. 1992. Intercropping of soybean and

maize for silage in Northern Italy. Effect of nitrogen level and percent

density on growth, yield and protein content. Europian J. Agron. 1: 207-211.

Mariano, R.L.R. and Kloepper, J.W. 2000. Metodo alternativo de biocontrole:

Resistencia sistemica induzidapor rizobacterias. Revisao Anual de Patologia

de Plantas, 8: 121-137.

Marschner, P. and Baumann, K. 2003. Changes in bacterial community structure

induced by mycorrhizal colonization in split-root maize. Plant Soil, 251: 279-

289.

Marschner, P. and Timonen, S. 2005. Interactions between plant species and

mycorrhizal colonization on the bacterial community composition in the

rhizosphere. Appl. Soil Ecol. 28: 23-36.

Martens, D.C. and Beahm, B.R. 1978. Chemical effects on plant growth of fly ash

incorporation into soil. In: Environmental Chemistry and Cycling

Processes. EDRA. Symp. Ser. Conf. 760429, U.S. Dept. Commerce,

Springfield, V.A., USA.

Martens, D.C. 1971. Availability of plant nutrients in fly ash. Compost Sci. 12: 15-

19.

Martensson, A.M. and Witter, E., 1990. The influence of various soil amendments on

nitrogen fixing soil microorganisms in a long-term field experiment, with

special reference to sewage sludge. Soil Biol. Biochem. 22: 977-982.

Masadeh, B., Von alter, H., Grunewaldt-Stoecker, G. and Sikora, R.A. 2004.

Biocontrol of root-knot nematodes using arbuscular mycorrhizal fungus

Glomus intraradices and the antagonist Trichoderma viride in two tomato

cultivars differing in their suitability as hosts for nematodes. J. Plant Dis.

Protect. 111: 322-333.

Masefield, C.B. 1958. Some factors affecting nodulation in tropics In: Nutrition of

Legumes, (ed.) Hallsworth, E.G., Butterworth Scientific Publication,

London. pp. 202-215.

Mathur, N. and Vyas, A. 1996. In: Methods in Physiological Plant Pathology.

Shivakami Publication, Madras, India. pp: 215.

Mathur, V.K. and Varaprasad, K.S. 1979. Pathogenicity and life cycle of

Meloidogyne incognita on sugarbeet in India. Nematol. Medit. 72: 199-202.

241

Bibliography

Matsubara, H. and Feder, J. 1970. Other bacterial mold and yeast proteases. In: The

Enzymes III, (ed.) Boyer, P.D. Academic Press: New York. pp 721-795.

Matte, D.B. and Kene, D.R. 1995. Effect of fly ash application on yield performance

of kharif and rabi crops. J. Soils Crop, 5: 133-136.

Mayak, S., Tirosh, T. and Glick, B.R. 2004. Plant growth promoting bacteria that

confer resistance to water stress in tomato and pepper. Pl. Sci. 166: 525-530.

Mc Clure, M.A. 1977. Meloidogyne incognita: a metabolic sink J. Nematol. 9: 88-90.

Meena, M.L. and Mishra, S.D. 1993. Pathogenic potentiality and extent of damage to

soyabean by root- knot nematode, Meloidogyne incognita. Curr. Nematol. 4:

1-6.

Meharg, A.A. and Cairney, J.W.G. 2000. Co-evolution of mycorrhizal symbionts and

their hosts to metal-contaminated environments. Adv. Ecol. Res. 30: 69-112.

Meher, H.C., Gajbhiye, V.T., Singh, G. and Sharma, H.K. 2008. Nematicidal efficacy

and persistence, fenamiphos and triazophos in chickpea following seed

treatment. Nematol. Medit. 36: 203-210.

Meixner, C., Ludwig-Muller, J., Miersch, O., Gresshoff, P., Staehelin, C. and

Vierheilig, H. 2005. Lack of mycorrhizal autoregulation and phytohormonal

changes in the super nodulating soybean mutantnts1007. Planta, 222: 709-

715.

Melakeberhan, H. and Webster, J.M. 1993. The phenology of plant-nematode

interaction and yield loss. In: Nematode Interactions, (ed.) Khan, M.W.

Chapman and Hall, London, U.K. p. 26-41.

Melakeberhan, H., Brooke, R.C. and Webster, J.M. 1986. Relationship between

physiological response of French beans of different age

to Meloidogyne incognita and subsequent yield loss. Plant Path. 35: 203-

213.

Melakeberhan, H., Dey, J., Baligar, V.C. and Carter Jr., T.E. 2004. Effect of soil pH

on the pathogenesis of Heterodera glycines and Meloidogyne incognita on

Glycine max genotypes. Nematology, 6: 585-592.

Meon, S., Wallace, H.R. and Fisher, J.M. 1978. Water relations of tomato

(Lycopersicum esculentum Mill. cv. Early Dwarf Red) infected with

Meloidogyne javanica (Treub.) Chitwood. Physiol. Pl. Pathol. 13: 275-281.

242

Bibliography

Merriman, P.R., Price, R.D., Kollmorgen, J.F., Piggott, T. and Ridge, E.H. 1974.

Effect of seed inoculation with Bacillus subtilis and Streptomyces griseuson

on the growth of cereals and carrots. Austral. J. Agric. Res. 25: 219-226.

Miller, R.M. and Jastrow, J.D. 1990. Hierarchy of root and mycorrhizal fungal

interactions with soil aggregation. Soil Biol. Biochem. 22: 579-584.

Minchin, F.R. and Pate, J.S. 1973. The carbon balance of a legume and functional

economy of its root nodules. J. Exp. Bot. 24: 259-271.

Mirghani, A.M.O. 1994. Effects of vesicular-arbuscular mycorrhiza and Root-knot

nematode on tomato (Lycpersicon esculentum Nil.) plant. M.Sc. Thesis,

Unversity of Khartoum.

Mishra, A. and Shukla, B.N. 1997. Interrelations between G. fasciculatum and M.

incognita on tomato. J. Mycol. Plant Pathol. 27: 199-202.

Mishra, L.C. and Shukla, R.N. 1986. Effect of fly ash deposition on growth,

metabolism and dry matter production of maize and soybean. Environ.

Pollut. 42: 1-13.

Mittra, B.N., Karmakar, S., Swain, D.K., Ghosh, B.C. 2005. Fly ash a potential source

of soil amendment and a component of integrated plant nutrient supply

system. Fuel, 84: 1447-1451.

Mohandas, S. 1987. Field response of tomato (Lycopersicon esculentum Mill.) cv.

Pusa Ruby to inoculation with VAM fungus Glomus fasciculatum and

Azotobacter venetandii. Plant Soil, 98: 295-297.

Mohanty, K.C., Desh, L. and Swain, S.C. 2001. Effect of Meloidogyne incognita on

nodulation and root biochemistry in French bean. Ann. Plant Pretec. Sc. 9:

81-86.

Mohanty, K.C., Mohanty, P.K. and Pradhan, T. 1997. Effect of Meloidogyne

incognita on root biochemistry and functioning of nodules in green gram.

Indian J. Nematol. 27: 1-5.

Mohanty, K.C. and Pradhan, A.K. 1989. Quantitative estimation of free aminoacids

and amides in resistant and susceptible green gram varieties inoculated with

root knot nematode, Meloidogyne incognita. Indian J. Nematol. 19: 74-76.

243

Bibliography

Moliner, A.M. and Street, J.J. 1982. Effect of fly ash and time on growth and

composition of corn (Zea mays L.) on acid sandy soils. Soil Crop Sci. 41:

217-220.

Molla, M.N. and Solaiman, A.R.M. 2009. Association of arbuscular mycorrhizal

fungi with leguminous crops grown in different agro-ecological zones of

Bangladesh. Archiv. Agron. Soil Sci. 55: 233-245.

Morandi, D. 1987. VA mycorrhizae, nematodes, phosphorus and phytoalexins on

soybean. In: Mycorrhizae in the Next Decade, Practical Application and

Research Priorities, (Eds.) Sylvia, D. M., Hung, L. L., and Graham, D. H.,

Proc. of 7th N. Am. Conf. on Mycorrhizae, Institute of Food and Agriculture

Sciences, University of Florida, Gaineville, GA.

Mosse, B. 1973. Advances in the study of vesicular-arbuscular mycorrhiza. Annu.

Rev. Phytopathol.11: 171-196.

Mossor-Pietraszewska, T. 2001. Effect of aluminium on plant growth and

metabolism. Acta Biochim. Pol. 3: 673-686.

Mountain, W.B. 1960. Theoretical considerations of plant nematode relationship, In:

Nematology, (eds.) Sasser, J.N. and Jenkins, W.R. University of North

Carolina Press, Chapel Hill, p. 419-421.

Mudd, J.B. and Kozlowski, T.T. 1975. In: Responses of Plants to Air Pollution.

Academic Press, New York.

Mukerji, K.G., Chamola, B.P. and Sharma, M. 1997. Mycorrhizae in control of plant

pathogens. In: Management of Threatening Plant Diseases of National

Importance, (eds.) Agnihotri, V.P., Sarbhoy, A.K. and Singh, D.V. Mehrotra

Publishing House, New Delhi, pp. 297-314.

Muthukumar, T., Udaiyan, K. and Rajeshkannan, V. 2001. Response of neem

(Azadirachta indica A. Juss) to indigenous arbuscular mycorrhizal fungi,

phosphate solubilizing and asymbiotic nitrogen-fixing bacteria under tropical

nursery conditions. Biol. Fert. Soils. 34: 417-426.

Nadary, S.N., Al-Hazmi, A.S., Dawabah, A.A.M. and Al-Yahya, F.A. 2006.

Relationship between the initial inoculum density of Meloelogyne incognita,

infection and reproduction on green beans. 9th Arab congress of plant

protection Damascus, Syria NB- E. 112 (Abstract).

244

Bibliography

Nagorska, K., Bikowski, M. and Obuchowski, M. 2007. Multicellular behaviour and

production of a wide variety of toxic substances support usage of Bacillus

subtilis as a powerful biocontrol agent. Acta Biochimica Polonica, 54: 495-

508.

Nayak, D.K., Routary, B.N., Ray, S. and Das, S.N. 1987. Population Effect of

Meloidogyne incognita on wing bean. Int. Nematol. Network Newsletter. 4:

22-24.

Nehra, S., Pandey, S. and Trivedi, P.C. 2003. Interaction of arbuscular mycorrhizal

fungi and different levels of root-knot nematode on ginger. Indian Phytopath.

56: 297-299.

Nehra, S. and Trivedi, P.C. 2002. Pathogenicity and interaction study between

Meloidogyne incognita and Fusarium oxysporum infecting ginger. J. Indian

Bot. Soc. 82: 123-126.

Neipp, P.W. and Becker, J.O. 1999. Evaluation of biocontrol activity of

rhizobacteria from Beta vulgaris against Heterodora schachtii. J.

Nematol. 31: 54-61.

Nejab, S.A.H. and Khan, M.W. 1997. Influence of initial inoculum levels of root-

knot nematode, Meloidogyne javanica (race-1) on growth of some chickpea

cultivars. Applied Entomol. Phytopathol. 64: 12-13.

Nelson, D.W. and Sommers, L.F. 1972. A simple digestion procedure for estimation

of total nitrogen in soils and sediments. J. Environ. Qual. 1: 423-425.

Nelson, L.M. 2004. Plant growth promoting rhizobacteria (PGPR): prospects for new

inoculants. Crop management Doi: 101094/Cm-2004-0301-05-RV.

Nemec, B. 1910. Das problem der Befruchtungsvorgange und andere Zytologische

Fragen. Teil 4. Vielkernige Riesenzellen in Heterodera gallen Berlin: Gebr

Borntraeger, pp. 151-173.

Newman, E.I. 1988. Mycorrhizal links between plants: their functioning and

ecological significance. Adv. Ecol. Res. 18: 243-270.

Newman, E.I. and Ritz, K. 1986. Evidence on the pathways of phosphorus transfer

between vesicular-arbuscuiar mycorrhizal plants. New Phytol. 104: 77-87.

245

Bibliography

Newsham, K.K., Fitter, A.H. and Watkinson, A.R. 1995. Arbuscular mycorrhiza

protects an annual grass from root pathogenic fungi in the field. J. Ecol. 83:

991-1000.

Niebel, A., de Almeida Engler, J., Tire, C., Engler, G., Van Montagu, M. and

Gheysen, G. 1993. Induction patterns of an extensin gene in tobacco upon

nematode infection. Plant Cell, 5: 1697-1710.

Niemira, B.A., Hammerschmidt, R. and Safir, G.R. 1996. Post harvest suppression of

potato dry rot (Fusarium sambucinum) in prenuclear minitubers by arbuscular

mycorrhizal fungal inoculums. Am. Potato J. 73: 509-515.

Niyaz, T. and Hisamuddin, 2008. Growth and anatomy of green poppy Papaver

rhoeas infected with Meloidogyne incognita. Indian J. Nematol. 38: 42-45.

Niyaz, T. and Hisamuddin, Azam, T. and Robab, M.I. 2008. Impact of fly ash

amended soil on growth, quality and productivity of Eclipta alba (L). Trends

Biosci. 1: 46-48.

Niyaz, T., Azam, T and Hisamuddin, 2011. Histological responses on damage

potential in roots of Eclipta alba L. caused by Meloidogyne incognita. Libyan

Agriculture Research Center Journal International, 2: 118-122.

Noling, J. W. and J. O. Becker. 1994. The challenge of research and extension to

define and implement alternatives to Methyl Bromide. Supplement to the J.

Nematol. 26: 573-586.

Nordacci, J.F. and Barker, K.R. 1979. The influence of temperature on Meloidogyne

incognita on soybean. J. Nematol. 11: 62-70.

Nourinia, A.A., Faghani, E., Rejali, F., Safarnezhad, A. and Abbasi, M. 2007.

Evaluation effects of symbiosis of mycorrhiza on yield components and some

physiological parameters of barley genotypes under salinity stress. Asian J.

Plant Sci. 6: 1108-1112.

Oades, J.M. 1984. Soil organic matter and structural stability: mechanisms and

implications for management. Plant Soil 76: 319-337.

O'Bannon, J.H., Inserra, R.N., Nemec, S. and Volvas, N. 1979. The influence of

Glomus mosseae on Tylenchulus semipenetrance- infected and uninfected

Citrus limon seedlings. J. Nematol. 11: 247-250.

246

Bibliography

Odum, E.P. 1971. In: Fundamentals of Ecology (3rd). WB Sunders Company.

Philadelphia, London, Toronto. p. 574.

Ogunfowora, A.O. 1977. The effects of different population levels of Meloidogyne on

the yield of tomato (Lycopersicon esculentum) in southwestern Nigeria. Plant

Prot. 3: 61-67.

Oka, Y.J., Chet, I. and Spiegel, Y. 1993. Control of the root-knot

nematode Meloidogyne javanica by Bacillus cereus. Biocontrol Sci. Techn. 3:

115-126.

Omar, S.A. 1995. Growth effects of the vesicular-arbuscular mycorrhizal fungus

Glomus constrictum on maize plants in pot trials. Folia Microbiol. 40: 503-507.

Oostendorp, M. and Sikora, R.A. 1990. In vitro interrelationships between

rhizosphere bacteria and Heterodera schachtii. Rev. Nematol. 13: 269-274.

Oostendrop, M. and Sikora, R.A. 1989. Seed treatment with antagonistic

rhizobacteria for suppression of Heterodera schachtii early root infection of

sugarbeet. Revue de namatologie 12: 77-83.

Osman, A.A., Farahat, A.A., El-Nagar, H.I. and Hendy, H.H. 1993. Influence of trace

elements and heavy metals on the infectivity and reproduction of the reniformis

nematode on sunflower and plant growth response. Egypt. J. Appl. Sci. 8: 91-

97.

Oteifa, B.A. 1952. Potassium nutrition of the host in relation to infection by a root-

knot nematode Meloidogyne incognita. Proc. Helminthol. Soc. Wash. 19: 97-

104.

Oteifa, B.A. and El-gindi, D.M. 1962. Influence of parasitic duration of Meloidogyne

javanica (Treub) on host nutrient uptake. Nematologica, 8: 216-220.

Owens, R.G. and Bottino, R.F. 1966. Changes in host cell wall composition induced

by root-knot nematodes. Contr. Boyce Thompson Inst. 23: 171-180.

Owens, R.G. and Specht, H.N. 1964. Root-knot histogenesis. Contr. Boyce Thompson

Inst. 22: 471-489.

Owens, R.G. and Novotny, H.M. 1960. Physiological and biochemical studies in

nematode galls. Phytopathology, 50: 650.

Oyekanmi, E.O., Coyne, D.L., Fagade, O.E. and Osonubi, O.E. 2007. Improving

root-knot nematode management on two soybean genotypes through the

247

Bibliography

application of Bradyrhizobium japonicum, Trichoderma pseudokoningii and

Glomus mosseae in full factorial combinations. Crop Prot. 26: 1006-1012.

Ozgonen, H., Akgul, D.S. and Erkilic, A. 2010. The effects of arbuscular mycorrhizal

fungi on yield and stem rot caused by Sclerotium rolfsii Sacc. in peanut. Afr. J.

Agric. Res. 5: 128-132.

Padgham, J., Le, H. and Sikora, R.A. 2005. Opportunities for nematode biocontrol in

lowland rainfed rice using bacterial endophytes. Symposium on the Global Food

& Product Chain Dynamics, Innovations, Conflicts, Strategies. Hohenheim,

Germany. Oct. 11-13. pp.15.

Padgham, J.L. and Sikora, R.A. 2007. Biological control potential and modes of

action of Bacillus megaterium against Meloidogyne graminicola on rice.

Crop Prot. 26: 971-977.

Palacino, J.H. and Leguizamon, J. 1991. Interaction between Glomus manihotis and

Meloidogyne incognita in yellow and red pitaya, Fitopatologia Colombiana, 15:

19-17.

Pandey, V.C. 2008. Studies on some leguminous plants under the stress of fly-ash and

coal residues released from national thermal power corporation tanda. Ph.D.

thesis. Dr. R.M.L. Avadh University Faizabad, India.

Pandey, V.C., Abhilash, P.C. and Upadhyay, R.N. and Tewari, D.D. 2009.

Application of fly ash on the growth performance and translocation of toxic

heavy metals within Cajanus cajan L.: implication for safe utilization of fly ash

for agricultural production. J. Hazard Mater.166: 255-259.

Pandya, S., Iyer, P., Gaitonde, V., Parekh, T. and Desai, A. 1999. Chemotaxix of

Rhizobium sp. S2 towards Cajanus cajan root exudates and its major

components. Curr. Microbiol. 38: 205-209.

Pankaj, K., Bansal, R.K. and Dabur, K.R. 2011a. In vitro screening of bacteria free

culture supernatants from rhizobacteria on hatching & mobility of Meloidogyne

incognita graminicola. Indian J. Nematol. 41: 14-20.

Pankaj, K., Bansal, R.K. and Dabur, K.R. 2011b. Effect of rhizobacteria as seedling

inoculation on root-knot nematode and plant growth in rice-nursery. Indian J.

Nematol 41: 41-46.

248

Bibliography

Park, D.K., Joon, K.K., Jae, H.L., Young, H.C., Yun, C.H. and Dong, G.K. 2007.

Effects of root-knot nematodes (Meloidogyne incognita) on growth and yield of

Oriental melon (Cucumis melo L. var. Makuwa mak.). Horticulture Environ.

Biotech. 48: 92-96.

Paruthi, I.J. 2004. Chemotherapy-constraints and newer directions for nematode

management. In: Course Manual on “ Recent Technologies in the Management

of Phytoparasitic Nematodes for Sustainable Agriculture, (eds.) Jain, R.K.,

Gupta, D.C., Bajaj, H.K., Baghel, PPS., Paruthi, I.J., Walia, R.K. and Dabur,

K.R. Department of Nematology, CCS HAU, Hisar, pp. 359-372.

Paruthi, I.J., Kumar, A. and Nandal, S.N. 2006. Practical Manual on Nematode

Management, Department of Nematology, CCS, HAU, Hisar. pp. 61.

Parveen, K., Haseeb, A. and Shukla, P.K. 2006. Pathogenic potential of Meloidogyne

incognita on Mentha arvensis cv. Gomti. Indian J. Nematol. 36: 177-180.

Parveen, R. 2006. Studies on Ocimum sanctum (L) infected with root-knot nematode,

Meloidogyne incognita (Kofoid and White). Chitwood. Ph.D Thesis. AMU.

Aligarh.

Pasha, M.J., Khan, M.W. and Siddiqui, Z.A. 1990. Effect of soil amendment with fly

ash of thermal power plant origin on root-knot nematodes on cucumber.

Nematologica, 36: 381.

Pasha, M.J., Siddiqui, Z.A., Khan, M.W. and Qureshi, S.I. 1987. Histopathology of

egg plant roots infected with root-knot nematode, Meloidogyne incognita. Pak.

J. Nematol 5: 27-43.

Patel, D.J., Patel, B.A., Chavda, J.C. and Patel, H.V. 1988. Record of Meloidogyne

javanica on groundnut in Gujarat, India. Int. Arachis Newslett. 3: 16-17.

Pathak, K.N., Nishi, K. and Haider, M.G. 2000. Effect of population levels of

Meloidogyne incognita on seed germination, seedling emergence and plant

growth of cauliflower. Indian J. Nematol. 30: 8-12.

Pathan, M.A., Jiskani, M.M., Wagan, K.H. and Darban, D.A. 2004. Variability in

reproduction of Meloidogyne incognita on selected tomato cultivars. Pak. J.

Nematol. 22: 61-64.

Patterson, N.A., Cheit, I. and Kapulnik, Y. 1990. Effect of mycorrhizal inoculation

on nodule initiation activity and contribution to legume productivity. Symbiosis,

8: 9-20.

249

Bibliography

PAU, 1993. Utilization of fly ash in agriculture and re-vegetation of dumping

sites. Annual progress report. Punjab Agriculture University (PAU), Ludhiana,

India: Punjab Agriculture University.

Paulitz, T.C. and Linderman, R.G. 1991. Mycorrhizal interactions with soil

organisms. In: Handbook of Applied Mycology. Soil and Plants. Vol. 1. (eds.)

Arora, D.K., Rai, Mukerji, K.G., Knudsen, G. and Marcel Dekker, New York.

pp 77-129

Paulson, R.E. and Webster, J.M. 1970. Giant cell formation in tomato roots caused

by Meloidogyne incognita and Meloidogyne hapla (Nematode) infection: A

light and electron microscope study. Can. J. Bot. 48: 271-276.

Pawar, K. and Dubey, P.S. 1988. Germination behaviors of some important crop

species in fly ash incorporated soils. Advancement of crops and monitoring of

environment. Prog. Ecol. 10: 295-305.

Pawlowska, T.E. and Charvat, I. 2004. Heavy-metal stress and developmental

patterns of arbuscular mycorrhizal fungi. Appl. Environ. Microbiol. 70: 6643-

6649.

Peacock, F.C. 1959. The development of a technique for studying the host parasite

relationship of the root-knot nematode, Meloidogyne incognita under controlled

conditions. Nematologica, 4: 43-55.

Peacock, F.C. 1961. A note on the attractiveness of roots to plant parasitic

nematodes. Nematologica, 6: 85-86.

Perret, X., Staehelin, C. and Broughton, W.J. 2000. Molecular basis of symbiotic

promiscuity. Microbiol. Mol. Biol. Rev. 64: 180-201.

Perry, D.A., Molina, R. and Amaranthus, M.P. 1987. Mycorrhizae,

mycorrhizospheres and reforestation: current knowledge and research needs.

Can. J. For. Res. 17: 929-940.

Peters, N.K., Frost, J.W. and Long, S.R. 1986. A plant flavones, luteolin, induces

expression of Rhizobium meliloti nodulation genes. Science, 233: 977-980.

Phillips, J.M. and Hayman, D.S. 1970. Improved procedures for clearing roots and

staining parasitic and vesicular-arbuscular mycorrhizal fungi for rapid

assessment of infection. Trans. Brit. Mycol. Soc. 55: 157-160.

250

Bibliography

Pinochet, J., Calvet, C., Camprubi, A. and Fernandez, C. 1996. Interactions between

migratory endoparasitic nematodes and arbuscular mycorrhizal fungi in

perennial crops -A review. Plant and Soil, 185: 183-190.

Poornima, K. and Vadivelu, S. 1998. Pathogenisity of Meloidogyne incognita to

turmeric (Curcuma longa L.). Proceeding of the Third International Symposium

of Afro-Asian Society of Nematologists (TISAASN), Coimbatore pp. 29-31.

Porter, W.M. 1979. The most probable number method for enumerating infective

propagules of vesicular arbuscular mycorrhizal fungi for rapid assessment of

infection Trans. Brit. Mycol. Soc. 55: 158-161.

Pozo, M.J., Cordier, C., Dumas-Gaudot, E., Gianinazzi, S., Barea, J.M., and Azcón-

Aguilar, C. 2002. Localized vs systemic effect of arbuscular mycorrhizal fungi

on defence responses to Phytophthora infection in tomato plants. J. Exp. Bot.

53: 525-534.

Praob, W., Nguen-Hom, J., Jaimasit, P., Silapapongpri, S., Thanunchai, J. and

Chaisuk, P. 2009. Biological control of lettuce root-knot disease by the use of

Pseudomonas aerugenosa, Bacillus subtilis and Paecilomyces lilacinus. J. Agri.

Tech. 5: 179-191.

Prasad, D. and Narayana, R. 1999. Effect of Meloidogyne incognita Race-1 on the oil

content of sunflower. Ann. Plant Protect. Sci. 7: 116-117.

Prasad, S.S.K. 1971. Effects of amino acids and plant growth substances on tomato

and its root knot nematode Meloidogyne incognita Chitwood. M.Sc. (Agric.)

thesis, University of Agricultural Sciences, Bangalore, India.

Prasad, S.S.V., Tilak, K.V.B.R. and Gollakota, K.G. 1972. Role of Bacillus

thuringiensis var. thuringiensis in the larval survivability and egg hatching of

Meloidogyne spp., the causative agent of root-knot disease. J. Invert. Pathol. 20:

377.

Prot, J.C. 1980. Migration of plant parasitic nematodes towards plant roots. Rev. de.

Nematol. 1: 305-318.

Puppi, G., Azcon, R. and Hoflich, G. 1994. In: Impact of Arbuscular Mycorrhizas on

Sustainable Agriculture and Natural Ecosystems (eds.) Gianinazzi, S. and

Schuepp, H. Birkhauser Verlag, Basel, Switzerland, pp. 201-215.

251

Bibliography

Purchase, H.F. and Nutman, P.S. 1957. Studies on physiology of nodule formation

IV. The influence of bacteria numbers in the rhizosphere on nodule initiation.

Ann. Bot. 21: 439-454.

Querejeta, J.I., Allen, M.F. Caravaca, F. and Roldan, A. 2006. Differential

modulation of host plant delta C13 and delta O-18 by native and non native

arbuscular mycorhizal fungi in a semi arid environment. New Phytol. 169: 379-

387.

Rabatin, S.C. and Rhodes, L.H. 1982. Acaulospora bireticulata inside oribatid mites.

Mycologia, 74: 859-861.

Racke, J. and Sikora, R.A. 1992. Influence of plant health promoting rhizobacteria

Agrobacterium radiobacter and Bacillus sphaericus on Globodera pallid root

infection of potato and subsequent plant growth. J. Phytopath. 134: 198-208.

Raghav, D. 2006. Studies on the effects of particulate air pollutants application on

potato (Solanum tuberosum L.) Ph.D. Thesis A.M.U., Aligarh, India.

Rai, U.N., Tripathi, R.D. and Singh, N. 2002. Integrated biotechnological approach

for phytoremediation of fly-ash dykes (abstract). 2nd International Conference

on Plant and Environmental Pollution, 4-9 February. NBRI, Lucknow, India

Rai, U.N., Tripathi, R.D., Singh, N., Kumar, A., Ali, M.B., Pal, A. and Singh, S.N.

2000. Amelioration of fly ash by selected nitrogen fixing blue green algae. Bull.

Environ. Contam. Toxicol. 64: 294-301.

Rai, U.N., Pandey, K., Sinha, S., Singh, A., Saxena, R. and Gupta, D.K. 2004.

Revegetating fly ash landfills Prosopis juliflora L.: Impact of different

amendments and Rhizobium inoculation. Environ. Int. 30: 293-300.

Ramakrishnan, S.E., Jonathan, E.I. and Deepa, S.P. 2012. Influence of fly ash on

phytonematodes. Bulletin of National Institute of Ecology. 23: 1-15.

Ramakrishnan, S. and Rajendran, G. 1998. Influence of Meloidogyne incognita on

yield components and physiological functions of papaya. Nematol. Medit. 26:

225-228.

Ramamoorthy, V., Viswanathan, R., Raguchander, T., Prakasam, V. and Samiyappan,

R. 2001. Induction by systemic resistance by plant growth promoting

rhizobacteria in crop plants against pests and diseases. Crop Protect. 20: 1-11.

252

Bibliography

Rao, I.M. and Terry, N. 1989. Leaf phosphate status, photosynthesis and carbon

partitioning in sugarbeet. I. Changes in growth, gas exchange, and Calvin cycle

enzymes. Plant Physiol. 90: 814-819.

Rao, M.S., Reddy, P.P. and Mohandas, M.S. 1998. Bio-intensive management of

Meloidogyne incognita on egg plant by integrating Paecilomyces lilacinus and

Glomus mosseae. Nematol. Medit. 26: 213-216.

Ratnayake, M., Leonard, R.T. and Menge, J.E. 1978. Root exudation in relation to

supply of phosphorus and its possible relevance to mycorrhiza formation. New

Phytol. 81: 543-552.

Ratti, N., Khaliq, A., Shukla, P.K., Haseeb, A. and Janardhanan, K.K. 2000. Effect of

Glomus mosseae (Nicol. and Gerd.) Gerdemann and Trappe on the root-knot

disease of menthol mint (Mentha arvensis sub sp. haplocalyx Briquet) caused

by Meloidogyne incognita (Kofoid and White) Chitwood. J. Spices Aromatic

Crops, 9: 129-132.

Ratti, N., Verma, H.N. and Gautam, S.P. 2010. Effect of Glomus species on

physiology and biochemistry of Catharanthus roseus. Indian J. Microbiol.

50: 355-360.

Raupach, G.S. and Kloepper, J.W. 1998. Mixtures of plant growth promoting

rhizobacteria enhance biological control of multiple cucumber pathogens.

Phytopathology, 88: 125-136.

Raupach, G.S., Liu, L., Murphy, J., Tuzun, S. and Kloepper, J.W. 1996. Induced

systemic resistance in cucumber and tomato against cucumber mosaic

cucumovirus using plant growth-promoting rhizobacteria (PGPR). Plant Dis.

80: 891-894.

Rautaray, S.K., Ghosh, B.C. and Mittra, B.N. 2003. Effect of fly ash, organic wastes

and chemical fertilizers on yield, nutrient uptake, heavy metal content and

residual fertility in a rice-mustard cropping sequence under acid lacteritic soils.

Bioresource Technol. 90: 275-283.

Ravnskov, S., Nybroe, O. and Jakobsen, I. 1999. Influence of an arbuscular

mycorrhizal fungus on Pseudomonas fluorescens DF57 in rhizosphere and

hydrosphere soil. New Phytologist, 142: 113-122.

Ray, S. and Dalei, B.K. 1998. VAM for root-knot nematode and increased

productivity of grain legumes in Orrisa. Indian J. Nematol. 28: 41-47.

253

Bibliography

Rayen, J.G. 1994. A global prospective on pigeon pea and chick pea sustainable

production systems: Present status and future potential. Int. Symp. On Pulses

Research, April, 2-6, New Delhi, pp. 1-2.

Read, D.J., Francis, R. and Finlay, R. 1985. Mycorrhizal mycelia and nutrient cycling

in plant communities. In: Ecological Interactions in Soil: Plants, Microbes and

Animals, (eds.) Fitter, A.H. Atkinson, D., Read, D.J. and Usher, M.B.

Blackwell, Oxford, pp. 193-217.

Reddell, P. and Warren, R. 1986. “Inoculation of Acacia with mycorrhizal fungi:

potential benefits.” In: Australian Acacia in Developing Countries, (ed.)

Turnbull, J.W. ACIAR, Canberra, pp. 50-53.

Reddy, D.D.R. 1985. Analysis of crop losses in tomato due to Meloidogyne

incognita. Indian J. Nematol. 15: 55-59.

Reddy, P.P. 1974. Studies on the action of amino acids on the root-knot nematode

Meloidogyne incognita. Ph.D. thesis, University of Agricultural Sciences

Banglore, India.

Redecker, D., Morton, J.B., and Bruns, T.D. 2000. Ancestral lineages of arbuscular

mycorrhizal fungi (Glomales). Mol. Phylogen. Evol. 14: 276-284.

Reitz, M., Rudolph, K., Schroder, I., Hoffmann, S. H., Halimann,I. and Sikora, R.A.

2000. Lipopolysaccharides of Rhizobium etli strain G12 act in roots as an

inducing agent of systemic resistance to infection by the cyst nematode

Globodera pallida. Appl. Environ. Microbiol. 66: 3515-3518.

Requena, N., Jeffries, P. and Barea, J.M., 1996. Assessment of natural mycorrhizal

potential in a decertified semiarid ecosystem. Appl. Environ. Microb. 62: 842-

847.

Rich, J.R and Bird, G.W. 1974. Association of early-season VA mycorrhizae and

increased growth and development of cotton. Phytopathology, 64: 1421-1425.

Riely, B.K., Ane, J.M., Penmetsa, R.V. and Cook, D.R. 2004. Genetic and genomic

analysis in model legumes bring Nod-factor signaling to centre stage, Curr.

Opin. Plant Biol. 7: 408-413.

Riffle, J.W. 1971. Effect of nematodes on root inhibiting fungi. In: Mycorrhizae.

Proceedings of the North American Conference on Mycorrhizae. Miscellaneous

publication 1189, US Department of Agriculture, Washington, pp. 97-113.

254

Bibliography

Rillig, M.C., Mummey, D.L. 2006. Mycorrhizas and soil structure. New Phytol. 171:

41-53

Rodgers, C.S. and Andersen, R.C. 1995. The accumulation of boron in Agropyron

elongatum grown in coal fly ash. J. Environ. Qual. 2: 627.

Rodino, A.P., Metrae, R., Guglielmi, S. and Drevon, J.J. 2009. Variation among

common-bean accessions (Phaseolus vulgaris L.) from the Iberian Peninsula for

N2 - dependent growth and phosphorus requirement. Symbiosis, 47: 161-174.

Rodriguez, R.J., White, J.F. Jr, Arnold A.E. and Redman, R.S. 2009. Fungal

endophytes: diversity and functional roles. New Phytol. 182: 314-330.

Rodríguez-Kabana, R. and Williams, J.C. 1981. Assessment of soybean yield losses

caused by Meloidogyne arenaria. Nematropica, 11: 105-113.

Rombati, N. and Dhanachand, C. 2000. Effect of Meloelogyne incognita on the

growth, protein and lipid contents of Allium porrum. J. Mycol. Pl. Patol. 30: 60-

63.

Roncadori, R.W. and Hussey. R.S. 1977. Interaction of the endomycorrhizal fungus

Giga- spora margarita and root-knot nematode on cotton. Phytopathology, 67:

1507-1511.

Roslycky, E.B. 1967. Bacteriocin production in the rhizobia bacteria. Can. J.

Microbiol. 13: 431-432.

Ross, J.P. 1972. Influence of Endogone mycorrhizas on Phytophthora rot of soybean.

Phytopathology, 62: 896-897.

Rothwell, F.M. 1984. Aggregation of surface mine soil by interaction between VAM

fungi and lianin degradation products of Lespedex. Plant Soil, 80: 99-104.

Rousseau, J.V.D. and Reid, C.P.P. 1990. Effect of phophorus and ectomycorrhizas on

the carbon balance and loblolly pine seedlings. Forest Sci. 36: 101-112.

Roviria, H.D. 1961. Rhizobium numbers in the rhizospheres of red clover and

paspalum in relation to soil treatment and the numbers of bacteria and fungi.

Aust. J. Agric. Res. 12: 77-83.

Rudresh, D.L., Shivaprakash, M.K. and Prasad, R.D. 2005. Effect of combined

application of Rhizobium, phosphate solubilising bacterium and Trichoderma

spp. on growth, nutrient uptake and yield of chickpea (Cicer aritenium L.).

Appl. Soil Ecol. 28: 139-146.

255

Bibliography

Ruiz-Lozano, J.M., Collados, C., Barea, J.M. and Azcon, R. 2001. Arbuscular

mycorrhizal symbiosis can alleviate drought induced nodule senescence in

soybean plants. Plant Physiology. 82: 346-350.

Ryan, C.A. 2000. The systemin signaling pathway: differential activation of plant

defensive genes. Biochim. Biophys. Acta. 1477: 112-121.

Sa, T.M. and Israel, D.W. 1995. Nitrogen assimilation in nitrogen-fixing soybean

plants during phosphorus deficiency. Crop Sci. 35: 814-820.

Sadasivam, S. and Macickam, A. 1992. In: Biochemical Methods (2nd edn.). New

Age International (P) Limited Publishers, New Delhi and TNAU, Coimbatore,

India. 256p.

Sadasivam, S. and Manickam, A. 2008. In: Biochemical Methods. (3rd edn.). New

Age International Publishers, New Delhi, India, ISBN-13: 9788122421408

Sahu, K.C. 1998. Impact of residual soil on heavy metal leachate from fly ash pond at

Korba-An experimental approach. Indian J. Environ. Protec. 18: 498-504.

Salawu, E.O. and Estey, R.H. 1979. Observation on the relationships between a

vesicular arbuscular fungus, a fungivorous namtode and the growth of soybean.

Phytoprotect. 60: 99-102.

Saleh, H. and Sikora, R.A. 1984. Relationship between Glomus fasciculatum root

colonization of cotton and its effect on Meloidogyne incognita. Nematologica,

30: 230-237.

Salisbury F.B., 1994. The role of plant hormones. In: Plant-Environment Interaction,

(ed.) Wilkinson, R.E. New York, USA: Dekker, 39-81.

Samac, D.A. and Graham, M.A. 2007. Recent advances in legume-microbe

interactions: Recognition, defense response and symbiosis from a genomic

perspective. Plant Physiol. 144: 582-587.

Samaliev, H.Y., Andreoglou, F.I., Elawad, S.A., Hague, N.G.M and Gowen, S.R.

2000. The nematicidal effects of the bacteria Pseudomonas oryzihabitans and

Xenorhabdus nematophiluson the root-knot nematode Meloidogyne javanica.

Nematology, 2: 507-514.

Samathanam, C.J. and Sethi, C.L. 1996. Growth of mung bean as influenced by

different initial inoculum levels of Meloidogyne incognita. Indian J. Nematol.

26: 32-40.

256

Bibliography

Sankaranarayanan, C and Sundarababu, R. 1994. Interaction of Glomus fasciculatum

with Meloidogyne incognita inoculated at different timings on blackgram

(Vigna mungo). Nematol. Medit. 22: 35-36.

Sankaranarayanan, C. and Sundrababu, R. 1998. Effect of Rhizobium on the

interaction of vesicular arbuscular mycorrhizae and root-knot nematode on

black gram (Vigna mungo). Nematol. medit. 26: 195-198.

Sankaranarayanan, C. and Sundarababu, R. 2009. Reciprocal influence of arbuscular

mycorrhizal fungus and root knot nematode and interaction effects on

blackgram. Nematol. Medit. 37: 197-202.

Sarangi, P.K. and Mishra, P.C. 1998. Soil metabolic activities and yield in groundnut,

ladies finger and radish in fly ash amended soil. Res. J. Chem. Environ. 2: 7-13.

Sarmah, B. and Sinha, A.K. 1995. Pathogenecity of Meloidogyne incognita on

cowpea. Plant Health, 1: 12-14.

Sarojini, S., Ananthakrishnasamy, S., Manimegala, G., Prakash, M. and

Gunasekaran, G. 2009. Effect of lignite fly ash on the growth and reproduction

of earthworm Eisenia fetida. E.J. Chem. 6: 511-517.

Sasanelli, N., Ferri, D., Convertini, G. and D’ Addabbo, T. 2006. Nematicidal and

agronomical effects of composted olive pomace amendments. Proceedings of

the 12th Congress of the Phytopathological Union. 11-15 June. Rhodos Island,

Greece. 565-567.

Sass, J.E. 1951. In: Botanical Microtechnique, Iowa State College Press, Ames, Iowa.

pp. 228.

Sasser, J.N. and Carter, C.C. 1985. Overview of the international Meloidogyne project

1975-1984 In: An Advanced Treatise on Meloidogyne, (eds.) Sasser, J.N. and

Carter, C.C. vol. 1. Biology and Control. North Carolina State University

Graphics, Raleigh. Pp. 18-24

Sasser, J.N. and Freckman, D.W. 1987. World perspective on nematology: the role of

the society. In: Vistas on Nematology, (eds.) Veech, J.A. & Dickson, D.W.

Hyattsville, pp. 7-14.

Sasser, J.N. and Taylor, A.L. 1952. Studies on the entry of larvae of root-knot

nematodes into roots of susceptible and resistant plants. Phytopathology, 42:

474 (Abstr.).

257

Bibliography

Sawyer, T., Bandiera, S., Safe, S., Hutzinger, O. and Olie, K. 1983. Bioanalysis of

polychlorinated dibenzofuran and dibenzo-p-dioxin mixture in fly ash.

Chemosphere, 12: 529-36.

Saxena, R. and Reddy, D.D.R. 1987. Crop losses in pigeonpea and mungbean by

pigeonpea cyst nematodes, Heterodera cajani. Indian J. Nemamatol. 17: 91-94.

Sayre, R.M. and Starr, M.P. 1988. Bacterial diseases and antagonism of nematodes.

In: Diseases of Nematodes. Vol. 1. (eds.) Poinar Jr., G.O. and Jansson, H.B.

CRC Press Inc., Florida, U.S.A. pp. 69-101.

Scanlon, D.H. and Duggan, J.C. 1979. Growth and element uptake of woody plants on

fly-ash. Environ. Sci. Technol. 13: 311-315.

Schafer, P., Pfiffer, S., Voll, L.M. Zajic, D. Chandler, P.M. Waller, F., Scholz, U.,

Pons-Kuhnemann, J., Sonnewald, S. and Sonnewald, U. 2009. Manipulation of

plant innate immunity and gibberellin as factor of compatibility in the

mutualistic association of barley roots with Piriformospora indica. Plant Signal.

Behav. 4: 669–71.

Schenck, N.C. and Kinloch, R.A. 1974. Pathogenic fungi, parasitic nematodes and

endomycorrhizal fungi associated with soybean roots in Florida. Plant Dis.

Reptr. 58: 169:173.

Schenck, N.C., Kinlock, R.A. and Dickson, D.W. 1975. Interaction of

endomycorrhizal fungi and root-knot nematode on soybean. In: Endo-

Mycorrhizas, (eds.) Sanders, F.E., Mosse, B. and Tinker, P.B. Academic Press,

New York, pp. 605-61.

Schippers, B. 1992. Prospects for management of natural suppressiveness to control

soilborne pathogens. In: Biological Control of Plant Diseases, Progress and

Challenges for the Future. NATO ASI Series A: Life Sciences. Vol. 230. (eds.)

Tiamos, E.C., Panavizas, G.C. and Cook, R.J. PlenumPress, New York, pp. 21-

34.

Schloter, M., Dilly, O. and Munch, J.C. 2003. Indicators for evaluating soil quality.

Agric. Ecos. Environ. 98: 255-262.

Schnepf, A. and Roose, T. 2006. Modelling the contribution of arbuscular

mycorrhizal fungi to plant phosphate uptake. New Phytol. 171: 669-682.

Schroth, M.N. and Hancock, J.G. 1982. Disease suppressive soil and root colonizing

bacteria. Science, 216: 1376-1381.

258

Bibliography

Schuitzendubel, A. and Polle, A. 2002. Plant responses to abiotic stresses: heavy

metal-induced oxidative stress and protection by mycorrhization. J. Exp. Bot.

53: 1351-1365.

Schutter, M.E. and Fuhrmann, J.J. 2001. Soil microbial community responses to fly

ash amendment as revealed by analyses of whole soils and bacterial isolates.

Soil Biol. Biochem. 33: 1947-1958.

Schwob, I., Ducher, M. and Coudret, A. 1999. Effects of climatic factors on native

arbuscular mycorrhizae and Meloidogyne exigua in a Brazilian rubber tree

(Hevea brasiliensis) plantation. Plant Pathol. 48: 19-25.

Sekhon, H.S., Bains, T.S., Kooner, B.S. and Sharma, P. 2007. Grow summer

mungbean for improving crop sustainability, farm income and malnutrition.

Acta Horticulturae, 752: 459-464.

Sen, A. 1997. Microbial population dynamics in flyash amended acid lateritic soil. B.

Tech. Thesis. Kharagpur, India: Indian Institute of Technology.

Sensoy, S., Demir, S., Turkmen, O., Erdinc, C., and Savur, O.B. 2007. Responses of

some different pepper (Capsicum annuum L.) genotypes to inoculation with two

different arbuscular mycorrhizal fungi. Sci. Hort. 113: 92-5.

Shafi, A., Mahmood, I. and Siddiqui, Z.A. 2002. Integrated management of root-knot

nematode Meloidogyne incognita on chickpea. Thai. J. Agr. Sc. 35: 273-280.

Shalaby, M., Helmy, H.M., Kaindl, R. and Rahman, H.B.A. 2003. Genesis of the

metamorphosed Um Zeriq Zn-Pb-As-Ag prospect, Sinai, Egypt. Proceedings of

7th Biennial SGA Meeting, Aug. 24–28, 2003 Athens Greece, “Mineral

Exploration and Sustainable Development” Volumes 1 & 2. Millpress Science

Publishers, Rotterdam, pp 15-18.

Sharma, A. and Trivedi, P.C. 2001. Concomitant effect of VAM and neem products

on Heterodera avenae infected wheat. J. Indian Bot. Soc. 80: 9-13.

Sharma, A.K., Srivastava, P.C. and Joshi, B.N. 1994. Contribution of VA mycorrhizal

to zinc uptake in plants. In: Biochemistry of Metal Micronutrients in the

Rhizosphere, (eds.) Manthey, J.A., Crowley, D.E. and Luster, D.G. Lewis.

Publishers, Boca Raton, FL. pp. 111-124.

Sharma, K.S and Tiabi, B. 1989. Giant cell formation in pea roots incited by

Meloidogyne incognita infection. J. Phytol. Research, 22: 185-191.

259

Bibliography

Sharma, M.P. and Adholeya, A. 2000. Response of Eucalyptus tereticornis to

inoculation with indigenous AM fungi in a semiarid alfisol achieved with

different concentrations of available soil. P. Microbiol. Res.154: 349-354.

Sharma, N.K., and Sethi, C.L. 1975. Leghaemoglobin content of cowpea nodule as

influenced by Meloidogyne incognita and Heterodera cajani. Indian J. Nematol.

5: 113-114.

Sharma, N.K. and Sethi, C.L. 1976. Interrelationship between Meloidogyne incognita,

Heterodera cajanai and Rhizobium sp. on cowpea (Vigna sinensis L. Savi).

Indian J. Nematol. 6: 117-123.

Sharma, P. and Khurana, A.S. 1991. Studies on interactions of Meloidogyne

incognita and Rhizobium strains on symbiotic nitrogen fixation in mung bean

(Vigna radiata) (L.) Wilczek). Indian J. Ecol. 18: 118-121.

Sharma, S. and Dohroo, N.P. 1996. Vesicular arbuscular mycorrhiza in plant health

and disease management. Int. J. Trop. Plant Dis. 14: 147-155.

Sharma, S., Aggarwal, A., Prakash, V. and Sharma, D. 2005. Mass production of

VAM fungi using different substrates and hosts. J. Mycopathol. Research, 43:

51-56.

Sharma, S.B., Rupela, O.P., Ansari, M.A. and Gopalakrishnan, S. 1998. Suppression

of Meloidogyne javanica egg hatch by an isolate of Pseudomonas striata. In: 3rd

International Symposium of Afro-Asian Society of Nematlogists, Coimbatore,

pp. 16-19.

Sharma, S.B., Smith, D.H. and McDonald, D. 1992. Nematode constraints of

chickpea and pigeon pea production in the semi arid tropics. Plant Dis. 76: 868-

874.

Sharmila, R., Ramakrishnan, S., Deepa, S.P. and Cannayane, I. 2011. Effect of fly

ash on soil biota. Indian J. Nematol. 41: 222-223.

Shine, X., Zhenyu, Z., Biqing, Z. and Xiaoping, W. 2001. Effect of fly ash filtered

mud mixture on soil properties and radish yield and quality. Ying Yong

Shengtai Xebao. 12: 121-125.

Shivashankar, A., Bansal, K.C. and Abrol, E. 1993. Nitrogen in relation to leaf area

development and photosynthesis. Proceedings of the Indian National Science

Academy. 59: 239-244.

260

Bibliography

Siddiqui, A.I., Ehteshamul-Haque, S. and Shahid Shaukat, S. 2001. Use of

rhizobacteria in the control of root rot-root-knot disease complex of mung bean.

J. Phytopathology, 149: 337-346.

Siddiqui, I.A. 1971a. Histopathogenesis of galls induced by Meloidogyne naasi in Oat

roots. Nematologica, 17: 237-242.

Siddiqui, I.A. 1971b. Comparative penetration and development of Meloidogyne

naasi in wheat and Oat roots. Nematologica, 17: 566-574.

Siddiqui, I.A. and Taylor, D.P. 1970. Histopathogenesis of galls induced by

Meloidogyne naasi in wheat roots. J. Nematol. 22: 218-221.

Siddiqui, I.A., Ehteshamul-Haque, S., Ghaffar, A. 1999. Root dip treatment with

Pseudomonas aeruginosa and Trichoderma spp., in the control of root rot-root-

knot disease complex in chilli (Capsicum annuum L.). Pak. J. Nematol. 17: 67-

75.

Siddiqui, Z.A. and Ghouse, A.K.M. 1975. Formation of phloem in the roots of

Lagenaria leucantha infected with Meloidogyne incognita. Indian J. Nematol.

5: 102-104.

Sidhu, S.S. and Daderwal, K.R. 2000. Competition for nodulation among rhizobia in

legume -Rhizobium symbiosis. Indian J. Microbiol. 40: 211-246.

Sikka, R. and Kansal, B.D. 1995. Effect of fly ash application on yield and nutrient

composition of rice, wheat and pH and available nutrient status of soil.

Bioresource Technol. 50: 269-273.

Sikka, R., Kansal, B.D., Beri, V., Chaudhary, M.R., Sidhu, P.S., Pashricha, N.S. and

Bajwa, M.S. 1994. Potential use of fly ash as a source of plant nutrient. Proc.

Int. Symp. Nutr. Manag. Sust. Produc. 2: 136-137.

Sikora, R.A. 1978. Einfluss der endotrophen mykorrhiza (Glomus mosseae) auf das

wirt-parasit-verhaltnis Von Meloidogyne incognita in tomaten. Zeitschrift fur

Pflanzenkrankheiten und Pflanzenschutz 85: 197-202.

Sikora, R.A. 1979. Predisposition to Meloidogyne infection by the endotrophic

mycorrhizal fungus Glomus mosseae. In: Root-knot nematodes (Meloidogyne

species) systematics, biology and control, (eds.) Lamberti, F. and Taylor, C.E.

New York. Academic Press, pp. 399-404.

261

Bibliography

Sikora, R.A. and Greco, N. 1990. Nematodes parasites of food legumes. In:

Nematodes in Subtropical and Tropical Agriculture, (eds.) Luc, M., Sikora,

R.A. and Bridge, J. Wallingford, UK. CAB International, pp. 181-235.

Sikora, R.A. and Greco, N. 1993. Nematode Parasites of Food Legumes. In: Plant

Parasitic Nematodes in Subtropical and Tropical Agriculture, (eds.) M Luc,

R.A., Sikora, J. Bridge. Wallingford, UK: CAB International Institute of

Parasitology, pp. 629.

Sikora, R.A. and Hoffmann-Hergarten, S. 1993. Biological control of plant parasitic

nematodes with plant health promoting rhizobacteria. In: Pest Management

Biotechnology Based Technologies, (eds.) Lumsden, R.D. and Vaughn, J.L.

American Chemical Society, Washington. USA. pp. 166-172.

Sikora, R.A. and Reimann, S. 2004. Suppressive soils, the edge of chaos and

multitrophic strategies for biocontrol of pests and diseases in soil ecosystems.

IOBC WPRS Bull. 27: 251-258.

Sikora, R.A. and Schoenbeck, F. 1975. Effect of vesicular arbuscular mycorrhiza

(Endogone mosseae) on the population dynamics of the (Meloidogyne incognita

and Meloidogyne hapla). In: VIII int. Plant Prot. Congr., Reports and

Informations, Section V, Moscow, USSR. P 158-166.

Silva, V.N., Silva, L.E.S.F. and Figueiredo, M.V.B. 2006. Atuacao de rizobios com

rizobacterias promotoras de crescimento em plantas na cultura do caupi (Vigna

unguiculata L. Walp). Acta. Sci. Agron. 28: 407-412.

Singh, A.K. and Jamaluddin, 2010. Role of microbial inoculants on growth and

establishment of plantation and natural regeneration in limestone mined spoils.

World Journal of Agricultural Sciences (WJAS) 6: 707-712.

Singh, D.B. and Reddy, P.P. 1981. Influence of Meloidogyne incognita infestation on

Rhizobium nodule formation in soybean. Nematol. Medit. 2: 1-5.

Singh, D.K., Sale, P.W.G., Pallaghy, C.K. and Singh, V. 2000. Role of proline and

leaf expansion rate in the recovery of stressed white clover leaves with

increased phosphorus concentration. New Phytol. 146: 261-269

Singh, J., Sharma, J. and Sharma, R. 1978. Biochemistry alterations induced by

Meloidogyne incognita in brinjal. Indian J. Nematol. 8: 122-126.

Singh, K. 1993. Impact of root knot nematode on air pollution stressed plants. Ph.D.

Thesis, AMU, Aligarh, India.

262

Bibliography

Singh, K., Khan, M.W. and Khan, M.R. 1994. Growth and root-knot disease of

soybean under the stress of fly ash. National Symposium on Emerging

Technologies in Environmental Conservation, P. 7-14.

Singh, L.P. and Siddiqui, Z.A. 2003. Effects of fly ash and Helminthosporium oryzae

on growth and yield of three cultivars of rice. Bioresour. Technol. 86: 73-8.

Singh, S, Abbasi and Hisamuddin, 2013. Histopathological response of Lens

culinaris roots towards root-knot nematode, Meloidogyne incognita. Pak. J.

Biol. Sci. 16: 317-324.

Singh, S. 2003. Mass multiplication of AM fungi. Part 2. Carrier system, storage and

field application. Mycorrhiza News, 14: 2-10.

Singh, S. and Goswami, B.K. 2000. Pathogenicity of Meloidogyne incognita on

Cowpea. Indian J. Nematol. 30: 249.

Singh, S., Hisamuddin and Robab, M.I. 2005. Effect of Rhizobium on Pisum sativum

infected with Meloidogyne incognita grown in fly ash amended soil. National

Symposium on Recent Advances and Research Priorities in Indian Nematology.

p. 66.

Singh, S., Hisamuddin, Azam, T. and Robab, M.I. 2009. Role of fly ash in

management of root-knot disease on lentil. Abstract. International Conference

on Resource Development and Environmental Change Emerging Issues and

Challenges. p. 155.

Singh, S. and Kapoor, K.K. 1998. Effects of inoculation of phosphate-solubilizing

microorganisms and an arbuscular mycorrhizal fungus on mungbean grown

under natural soil conditions. Mycorrhiza, 7: 249-253.

Singh, S.K. 1989. Studies on the interaction of air pollutants and root-knot nematodes

on some pulse crops. Ph.D. Thesis, AMU Aligarh, India.

Singh, S.K. and Khurma, U.R. 2007. Susceptibility of six tomato cultivars to the

root-knot nematode, Meloidogyne incognita. South Pacific Journal of Natural

Sciences (SPJNS) 25: 73-77.

Singh, S.N., Kulshreshtha, K. and Ahmad, K.J. 1997. Impacts of fly-ash soil

amendment on seed germination, seedling growth and metal composition of

Vicia faba L. Ecol. Eng. 9: 203-208.

263

Bibliography

Singh, Y.P., Singh, R.S. and Sitaramaiah, K. 1990. Mechanisms of resistance of

mycorrhizal tomato against root-knot nematodes. In: Current Trends in

Mycorrhizal Research, (eds.) Jalali, B.L., and Chand, H., Proc. Nat. Conf.

Mycorrh., H.A.U., Hisar, India, pp. 96-97.

Sinha, S. and Gupta, A.K. 2005. Translocation of metals from fly ash amended soil in

the plant of Sesbania cannabina L. Ritz: effect on antioxidants. Chemosphere,

61: 1204-1214.

Sinha, S., Parab, N. and Mishra, S. 2013. Assessment of beneficial microorganisms

isolated from fly ash amended soil: effect on plant growth and biochemical

parameters on maize (Zea mays L.). International Conference on Prospects &

Challenges in Biotechnology & Printing & Packaging Industry, February 28-

March 1, Navi Mumbai.

Sinnott, E.W. and Bloch, R. 1944. Visible expression of cytoplasmic pattern in the

differentiation of xylem strands. Proc. Nat. Acad. Sci. 30: 388-92.

Sinnott, E.W. and Bloch, R. 1945. The cytoplasmic basis of intercellular patterns in

vascular differentiation. Am. J. Bot. 32: 151-6.

Siqueira, J.O., Rocha, W.F. J.R., Oliveira, E. and Colozzi-Filho, A. 1990. The

relationship between vesicular-arbuscular mycorrhiza and lime: Associated

effects on the growth and nutrition of brachiaria grass (Brachiaria decumbens).

Biol. Fert. Soils, 10: 65-71.

Sitaramaiah, K. and Sikora, R.A. 1996. Influence of mycorrhizal fungus Glomus

fasciculatum spore concentration of Rotylenchulus reniformis population

dynamics and cotton growth. Indian J. Nematol. 26: 1-6.

Sivaprasad, P., Jacob, A. and George, B. 1990. Root knot nematode infestation and

nodulation influenced by VA mycorrhizal association in cowpea. Indian J.

Nematol. 20: 49-52.

Sivaprasad, R., Jacob, A., Sulochana, K. and George, B. 1992. Root-knot nematode

infestation and phosphorus nutrition in Piper nigrum as influenced by vesicular

arbuscular mycorrhizal. Malaysian Plant Protection Society, 6: 34-37.

Smith, G.S. 1987. Interactions of nematodes with mycorrhizal fungi In: “Vistas on

Nematology- A Commemoration of the Twenty-fifth” (J.A Veech, D.W.

Dickson, eds.). Society of Nematolosis, Inc. Hyattsville, MD, USA.p. 292-300.

264

Bibliography

Smith, G.S. 1988. The Role of phosphorus nutrition in interactions of vesicular-

arbuscular mycorrhizal fungi with soil borne nematodes and fungi.

Phytopathology, 78: 371-374.

Smith, G.S., Hussey, R.S. and Roncadori, R.W. 1986. Penetration and post infection

development of Meloidogyne incognita on cotton as affected by Glomus

intraradices and phosphorus. J. Nematol. 18: 429-435.

Smith, H.V., Girdwood, R.W.A. and Kusel, J.R. 1984. Misinterpretation of toxocaral

serodiagnostic tests. Br. Med. J. 288: 1235.

Smith, J.J. and Mai, W.F. 1965. Host-parasite relationships of Allium cepa and

Meloidogyne. Phytopathology, 55: 693-697.

Smith, S.E. and Daft, M.J. 1977. Interactions between growth, phosphate content and

nitrogen fixation in mycorrhizal and non mycorrhizal Medicago sativa. Aust. J.

Plant Physiol. 4: 403-413.

Smith, S.E., Nichola, D.J.D. and Smith, F.A. 1979. Effect of early mycorrhizal

infection on nodulation and nitrogen fixation in Trifolium subterraneum

L. Aust. J. Plant Physiol. 6: 305-315.

Smith, S.E. and Read, D.J. 1997. Mycorrhizal symbiosis. 2nd edn. Academic Press,

Inc San Diego California. ISBN 0-12-652840-3.

Soderberg, K.H., Olsson, P.A. and Baath, E. 2002. Structure and activity of the

bacterial community in the rhizosphere of different plant species and the effect

of arbuscular mycorrhizal colonization. FEMS Microb. Ecol. 40: 223-231.

Southey, J.F. 1970. In: Laboratory methods for work with plant and soil nematode

technique Bulletin 2, Min. Agri. Fish. Food. HMSO. London p. 202.

Spiegel, Y., Cohn, E., Galper, S., Sharon, E. and Chet, I. 1991. Evaluation of a newly

isolated bacterium Pseudomonas chitinolytica sp. for controlling the root-knot

nematode, Meloidogyne javanica. Biocontrol Sci. Techn.1: 115-125.

Srinivasan, M., Petersen, D.J. and Holl, F.B. 1997. Nodulation of Phaseolus vulgaris

by Rhizobium etliis enhanced by the presence of Bacillus. Can. J. Microbiol. 43:

1-8.

Srivastava, K., Farooqui, K., Kulshreshtha, K. and Ahmad, K.J. 1995. Effect of fly

ash amended soil on growth of Lactuca sativa L. Environ. Biol. 16: 93-96.

265

Bibliography

Srivastava, S., Ansari, A.A., Singh, S., Naeem, M. and Hashmi, F. 2002. Growth rate

of Fenugreek plant, Trigonella foenumgraecum, as influenced by fly ash.

Bionotes, 44: 92.

Stancheva, I., Geneva, M., Zehirov, G., Tsvetkova, G., Hristozkova, M. and

Georgiev, G. 2006. Effects of combined inoculation of pea plants with

arbuscular mycorrhizal fungi and Rhizobium on nodule formation and nitrogen

fixing activity. Gen. Appl. Plant Physiology. 61-66.

St-Arnaud, M. and Vujanovic, V. 2007. Effects of the arbuscular mycorrhizal

symbiosis on plant diseases and pests. In: Mycorrhizae in Crop Production,

(eds.). Hamel, C. and Plenchette, C. New York: Haworth, pp. 67-122.

Starr, J.L. 1993. Dynamics of the nuclear complement of giant cells induced

byMeloidogyne incognita. J. Nematol. 25:416-421.

Stirling, G.R. 1991. Biological Control of Plant Parasitic Nematodes: Progress,

Problems and Prospects. C.A.B. International London, U.K. pp. 282.

Strobel, N.E., Hussey, R.S. and Roncadori, R.W. 1982. Interactions of vesicular-

arbuscular mycorrhizal fungi, Meloidogyne incognita and soil fertility on peach.

Phytopathology, 72: 690-694.

Stumpe, M., Carsjens, J.G., Stenzel, I., Global, C., Lang, I., Pawlowski, K., Hause, B.

and Feussner, I. 2005. Lipid metabolism in arbuscular mycorrhizal roots of

Medicago truncatula. Phytochemistry, 66: 781-791.

Subhashini, D.V. and Ramakrishnan, S. 2011. Interaction of VA Mycorrhiza and root-

knot nematode on tobacco plants: Effects of nematode inoculum density, soil

texture and soil solarization. Indian J. Nematol. 41: 56-61.

Subhashini, D.V. and Singh, S. 2011. Interaction of arbuscular mycorrhizal fungus,

Glomus fasciculatum and root-knot nematode on growth and phosphorus uptake

of tobacco (Nicotiana tobacum L.). Indian J. Nematol. 41: 170-173.

Subramanian, K.S. and Charest, C. 1999. Acquisition of N by external hyphae of an

arbuscular mycorrhizal fungus and its impact on physiological responses in

maize under drought-stressed and well-watered conditions. Mycorrhiza, 9: 69-

75.

Suganuma, N. and Yamamoto, Y. 1987. Carbon metabolism related to nitrogen

fixation in soybean root nodules. Soil. Sci. Plant Nutr. 33: 79.

266

Bibliography

Sundarababu, R. and Sankaranarayanan, C. 1995. Effect of nursery treated VAM on

the nematode interaction in tomato. Int. J. Tropical Plant Diseases. 13: 107-111.

Sundarababu, R., Sankaranarayanan, C. and Vadivelu, S. 1993. Interaction of

mycorrhiza species with Meloidogyne incognita on tomato. Indian J. Nematol.

23: 121-123.

Suneja, Y., Kaur, S., Gupta., A.K. and Kaur, N. 2011. Levels of nutritional

constituents and anti nutritional factors in black gram (Vigna mungo L.). Food

Res. Int. 44: 621-628.

Suresh, A.K., Bagyaraj, D.J. and Reddy, D.D.R. 1985. Effect of vesicular arbuscular

mycorrhiza on survival, penetration and development of root-knot nematode in

tomato. Plant and Soil, 87: 305-308.

Suresh, C.K. 1980. Interaction between vesicular arbuscular mycorrhizae and root-

knot nematodes in tomato. M.Sc. (Agric.) thesis, University of Agricultural

Sciences, Banglore, India.

Suresh, C.K. and Bagyaraj, D.J. 1984. Interaction between vesicular-arbuscular

mycorrhizae and a root-knot nematode and its effect on growth and chemical

composition on tomato. Nematol. Medit. 12: 31-39.

Swain, B. and Prasad, J.S. 1988. Chlorophyll content in rice as influenced by the

root-knot nematode, Meloidogyne graminicola infection. Current Sci. 57: 895-

896.

Swamy, B.G.L. and Krishnamurthy, K.U. 1971. Ontogenetic studies on plant galls.

II. The histopathology of the roots Basella alba infected with Meloidogyne

javanica. Phytomorphology, 21: 36-46.

Swarup, G. and Gokte, N. 1986. Biological control. In: Plant Parasitic Nematodes of

India: Problem and Progress, (eds.) Swarup, G. and Gupta, D.R. IARI, New

Delhi. pp 172-193.

Sylvia, D.M. and Williams, S.E. 1992. Vesicular-arbuscular mycorrhizae and

environmental stresses. In: Mycorrhizae in Sustainable Agriculture, (eds.)

Bethlenfalvay, G.J., Linderman, R.G. pp. 101–124, ASA No. 54, Madison,

USA.

Sylvia, D.M. and Sinclair, W.A. 1983. Phenolic compounds of resistance to fungal

pathogens induced in primary roots of Douglas-fir seedlings by the

ectomycorrhizal fungus Laccaris laccata. Phytopathology, 73: 390-397.

267

Bibliography

Taber, H.A. 1982. Occurrence of Glomus spores in weed seeds in soil. Mycologia,

74: 515-520.

Taha, A.H.Y and Raski, D.J. 1969. Interrelationships between root-knot bacteria,

plant parasitic nematodes and their leguminous host. J. Nematol. 1: 201-11.

Taha, Y.A. 1993. Nematode interaction with root nodule bacteria. In: Nematode

Interactions, (ed.) Khan, M.W. Chapman and Hall, London, U.K. pp. 170-202.

Tahat, M.M., Kamaruzaman, S., Radziah, O., Kadir, J. and Masdek, H.N. 2008.

Response of (Lycopersicum esculentum Mill.) to different arbuscular

mycorrhizal fungi species. Asian J. Plant Sci. 7: 479-484.

Talukdar, N.C. and Germida, J.J. 1994. Growth and yield of lentil and wheat

inoculated with three Glomus isolates from Saskatchewan soils. Mycorrhiza, 5:

145-152.

Tarannnum, A., Khan, A.A., Diva, I. and Khan, B. 2001. Impact of fly ash on

hatching: Penetration and development of root-knot nematode. Nematol. Medit.

29: 215-218.

Tarkka, M., Schrey, S. and Hampp, R. 2008. Plant associated micro-organisms. In:

Molecular Mechanism of Plant and Microbe Coexistence, (eds.) Nautiyal, C.S.

and Dion, P. Springer, New York pp 3-51.

Tavasolee, A., Aliasgharzad, N., Jouzani, G.S., Mardi, M. and Asgharzadeh, A. 2011.

Interactive effects of arbuscular mycorrhizal fungi and rhizobial strains on

chickpea growth and nutrient content in plant. African J. Biotechnol. 10: 7585-

7591.

Taylor, J, Harrier, L.A. 2001. A comparison of development and mineral nutrition of

micropropagated Fragaria xananassa cv. Elvira (strawberry) when colonized

by nine species of arbuscular mycorrhizal fungi. Appl. Soil Ecol. 18: 205-215.

TERI, 1998. Reclaiming Ash Pond by Means of Mycorrrhizal-Organo Biofertilizer

Quarterly reports submitted to fly ash mission TIFAC, DST, Tata Energy

Research Institute, New Delhi, India.

Thapar, H.S., Uniyal, K. and Rawat, D.S. 1996. Effect VAM fungi and Rhizobium on

growth of Acacia nilotica in saline forest soil. Van Vigyan, 34: 107-108.

Thetwar L.K. 2007. Studies on the effects of fly ash and plant hormones and soil

metabolic activities. Asian J. Chem. 19: 3515-3518.

268

Bibliography

Thiagarajan, T.R., Ames, R.N. and Ahmad, M.H. 1992. Response of cowpea (Vigna

unguiculata) to inoculation with co-selected vesicular arbuscular mycorrhizal

fungi and Rhizobium strains in field trials. Can. J. Microbiol. 38: 573-576.

Thirumaran, A.S. and Seralathan, M.A. 1988. Utilization of mungbean. In:

Proceedings of the second international mungbean symposium, (eds.) McClean,

S. and Shanhua, B.T. Taiwan: The World Vegetable Center (AVRDC).

Thomashow, L.S., Weller, D.M., Bonsall, R.F. and Pierson, L.S. 1990. Production of

the antibiotic phenazine-1-carboxylic acid by fluorescent Pseudomonas species

in the rhizosphere of wheat. Appl. Environ. Microbiol. 56: 908-912.

Thorne, G. 1927. The life history, habits and economic importance of some

mononchs. J. Agric. Res. 34: 265-286.

Thygesen, K., Larsen, J. and Bodker, L. 2004. Arbuscular mycorrhizal fungi reduce

development of pea root-rot caused by Aphanomyces euteiches using oospores

as pathogen inoculum. Eur. J. Plant Pathol. 110: 419-441.

Tian, R.R., Xie, Y.H., Zhu, W.W., Li, Y.H. and Zhang, Y. 2007. Activities and

toxicity of a novel plant growth regulator 2-furan-2-yl-[1,3] dioxolane. J. Plant

Growth Regul. 26: 362-368.

Timothy, C.P. and Robeert, G.L. 1992. Mycorrhizal interactions with soil organisms.

In: Handbook of Applied Mycology Soil and Plants, Vol. I. Marcel Dekker Inc,

USA, Newyork, pp. 77-130.

Tiwari, S., Kumari, B. and Singh, S.N. 2007. Evaluation of metal

mobility/immobility in fly ash induced by bacterial strains isolated from the

rhizospheric zone of Typha latifolia growing on fly ash dumps. Bioresource

Technol. 99: 1305-1310.

Tiyagi, S.A., Verma, N. and Alam, M.M. 2001. Effect of root-knot nematode,

Meloidogyne incognita on essential oil contents of rose. Proc. Nat. Acad. Sci.

71: 67-71.

Tomar, S.S., Pathan, M.A., Gupta, K.P. and Khandkar, U.R. 1993. Effect of

phosphate solubilizing bacteria at different levels of phosphate on black gram

(Phaseolus mungo). Ind. J. Agron. 38: 131-133.

Ton, J., Van Pelt, J.A., Van Loon, L.C. and Pieterse, C.M.J. 2002. Differential

effectiveness of salicylate-dependent and jasmonate/ethylene-dependent

induced resistance in Arabidopsis. Mol. Plant Microbe. Interact. 15: 27-34.

269

Bibliography

Torma, A.E. 1987. Impact of biotechnology on metal extractions. Mineral Processing

and Extractive Metallurgy Review, 2: 289-330.

Toro, H., Azcon, R. and Barea, J.M. 1997. Improvement of arbuscular mycorrhizal

development by inoculation of soil with phosphate solubilizing rhizobacteria to

improve rock phosphate bioavailability (P-32) and nutrient cycling. App.

Environ. Microbial. 63: 4408-4412.

Townsend, W.N. and Hodgson, D.R. 1973. Edaphalogical problems associated with

deposits of pulverized fuel ash. In: Ecology and Reclamation of Devastated

Land, (eds.) Hutnik, R.J. and Davis, G. vol 1. Gordon and Breach, New York,

pp. 45-45.

Tripathi, A. and Sahu, R.K. 1997. Effect of coal fly ash on growth and yield of wheat.

J. Environ. Biol. 18: 131-135.

Tripathi, R.D., Kulshreshtha, K., Singh, S.N., Rai, U.N., Singh, N., Banerjee, R.,

Vajpayee, P., Shukla, M.K. and Gupta, D.K. 2002. Performance of Brassica

campestris for utilization of solid waste of coal combustion residue (fly-ash)

(abstract). 2nd International Conference on Plant and Environmental Pollution,

4-9 February. NBRI, Lucknow, India.

Tripathi, R.D., Singh, S.N., Singh, N., Vajpayee, P. and Kumar, A. 2000.

Reclamation of fly ash landfills by successive plantation, soil amendments

and/or through biotechnological approach. Final Technical Report Submitted to

Directorate of Environment, U.P. India.

Tripathi, R.D., Vajpayee, P., Singh, N., Rai, U.N., Kumar, A., Ali, M.B., Kumar, B.

and Yunus, M. 2004. Efficacy of various amendments for amelioration of fly

ash toxicity: growth performance and metal composition of Cassia

siamea Lamk. Chemosphere, 54: 1581-1588.

Tripathy, M.K. and Pandhi, N.N. 1992. Pathogens reaction of rice bean, Vigna

umbellate (Thumb) Ohwi and Ohashi, to root knoot nematode, Meloidogyne

incognita. Orissa J. Agric. Res. 5: 17-19.

Trivedi, P.C. 1995. Biocontrol potential of VAM fungi in the management of plant

parasitic nematodes. Platinum jublee volume. J. Indian Bot. Soc. 74: 165-171.

Trivedi, P.C. 2003. Microbes in the management of plant parasitic nematodes. In:

Advances in Microbiology, (ed.) Trivedi, P.C. Scientific Publishers, Jodhpur.

pp. 341-355.

270

Bibliography

Truman, W., Bennett, M.H., Kubigsteltig, I., Turnbull, C. and Grant, M. 2007.

Arabidopsis systemic immunity uses conserved defense signaling pathways and

is mediated by jasmonates. Proc. Natl. Acad. Sci. USA 104: 1075-1080.

Tsimilli- Michael, M., Eggenberg, P., Biro, B., Koves-Pechy, K., Voros, L. and

Strasser, R.J. 2000. Synergistic and antagonistic effects of arbuscular

mycorrhizal fungi and Azospirillum and Rhizobium nitrogen-fixers on the

photosynthetic activity of alfalfa, probed by the polyphasic chlorophyll a

fluorescence transient O-J-I-P. Appl. Soil Ecol. 15: 169-182.

Tucker, M. 2004. Primary nutrients and plant Growth. In: Essential Plant Nutrients

(SCRIBD, ed.). North Carolina Department of Agriculturae.

Turner, J. T., and P. A. Backman. 1986. Quantum 4000 (Bacillus subtilis) as a

bacterial seed treatment of peanuts. In: Cultural and Biological Tests. Am.

Phytopathological Soc. p. 49.

Tylka, G.L., Hussey, R.S. and Roncadori, R.W. 1991. Axenic germinates of

vesicular arbuscular mycorrhizal fungi- effects of selected Streptomyces species.

Phytopathology, 81: 754-759.

Ugwuoke, K.I. and Eze, S.C. 2010. The effect of mycorrhiza (Glomus geosporum),

Rhizobium and Meloidogyne incognita on growth and development of cowpea

(Vigna unguiculata L. Walp). Res. J. Agric. & Biol. Sci. 6: 937-941.

Ullrich, C.I. and Aloni, R. 2000. Vascularization is a general requirement for growth

of plant and animal tumours. J. Exp. Bot. 51: 1951-1960.

Umesh, K.C., Krishnappa, K., and Bagyaraj, D.J. 1988. Interaction of burrowing

nematode, Radopholus similis (Cobb, 1983) Thorne, 1949, and VA mycorrhiza,

Glomus fasciculatum (Thaxt.) Gerd. and Trappe, in banana. Indian J. Nematol.

18: 6-11.

UNEP. 2000. The Montreal protocol on substances that deplete the ozone layer.

Ozone Secretariat, United Nations Environment Program, Nairobi, Kenya.

Upadhyay, E. and Khan, A.A. 2002. Physico-chemical properties of fly ash and its

impact on mustard. Environ. Biol. Cons. 7: 85-88.

Vaast, P., Caswell-Chen, E.P. and Zasoski, R.J. 1998. Influences of a root-lesion

nematode, Pratylenchus coffeae, and two arbuscular mycorrhizal fungi,

Acaulospora mellea and Glomus clarum on coffee (Coffea arabica L.). Biol.

Fertil. Soils, 26: 130-135.

271

Bibliography

Vaitheeswaran, M., Ibrahim, S.M. and Senthilkumar, K. 2005. Carbohydrate

metabolism in a host plant, Hibiscus cannabinus infected by Meloidogyne

incognita. Indian J. Nematol. 35: 205-206.

Vajpayee, P., Rai, U.N., Chaudhary, S.K., Tripathi, R.D. and Singh, S.N. 2000.

Management of fly ash landfills with Cassia surattensis Burm. Bull. Environ.

Contam. Toxicol. 65: 675-682.

Valdenegro, M., Barea, J.M. and Azcon, R. 2001. Influence of arbuscular

mycorrhizal fungi, Rhizobium meliloti strains and PGPR inoculation on the

growth of Medicago arborea used as model legume for revegetation and

biological reactivation in a semi-arid Mediterranean area. Plant Growth Regul.

34: 233-240.

Van Berkum, J.A. and Seshadri, A.R. 1970. Some important nematode problems in

India. 10th International Nematology Symposium, Pescara, Italy, pp. 136-137.

Van der Ent, S., Van Wees, S.C.M. and Pieterse, C.M.J. 2009. Jasmonate signaling in

plant interactions with resistance-inducing beneficial microbes. Phytochsmistry,

70: 1581-1588.

Van der Heijden, M.G.A., Streitwolf-Engel, R., Riedl, R., Siegrist, S., Neudecker, A.,

Ineichen, K., Boller, T., Weimken A. and Sanders, I.R. 2006. The mycorrhizal

contribution to plant prductuvity, plant nutrition and soil structure in

experimental grassland. New Phytol. 172: 739-752.

Van Loon, L.C., Bakker, P.A.H.M. and Pieterse, C.M. 1998 Systemic resistance

induced by rhizosphere bacteria. Annu. Rev. Phytopathol. 36: 453-483.

Van Loon, L.C., Geraats, B.P.J. and Linthorst, H.J.M. 2006. Ethylene as a modulator

of disease resistance in plants.Trends Plant Sci. 11: 184-191.

Van Scherven, D.P. 1958. Some factors affecting the uptake of nitrogen by legumes.

pp,137-163. In: Nutrition of the Legumes, (ed.) Hallsworth, E.G. Butterworths,

London. 359 p.

Varma, A. 1995. Ecophysiology and application of arbuscular mycorrhizal fungi in

arid soils. In: Mycorrhiza, (eds.) Varma, A. and Hock, B. Springer-Verlag,

Berlin. pp. 734.

Varma, A.K. 1979. Vesicular arbuscular mycorrhiza and nodulation in soyabean.

Folia Microblol. 24: 501-503.

272

Bibliography

Vashishth, K., Fazal, M., Imran. M., Raza, M.M.A. and Siddiqui, Z.A. 1994.

Morphological and biochemical response of blackgram to Meloelogyne

incognita. Ann. Plant Protec. Sci. 2-18.

Vazquez, M.D., Poschenrieder, C.I.C., Barcelo, J. 1999. Change in apoplastic Al

during the initial growth response to Al by roots of a resistant maize variety.

Plant Physiol. 119: 435-444.

Vercauteren, I., Geldhof, P., Peelaers, I., Claerebout, E., Berx, G. and Vercruysse,

J. 2003. Identification of excretory-secretory products of larval and

adult Ostertagia ostertagi by immunoscreening of cDNA libraries. Mol.

Biochem. Parasitol. 126: 201-208.

Verdejo, S., Calvet, C. and Pinochet, J. 1990. Efecto de la micorrizacion en kiwi

infestado por los nematodos Meloidogyne hapla and M. javanica. Bul. San.

Veg. Plagas. 16: 629-624.

Verma, A.C. and Ali, A. 1993. Occurrence of root-knot nematode Meloelogyne

incognita on pointed gourd (Trichosanthes dioica Rob) in eastern U.P. Indian. J.

Nematol. 23: 21.

Verma, K.K. 2009. Management of Meloidogyne javanica by bacterial antagonist,

Pseudomonas fluorescence as seedling root dip in tomato. Indian J. Nematol.

39: 207-210.

Verma, V.K. and Bansal, R.K. 1996. Antagonistic effect of culture supernatant of

Azotobacter chroococcum on larval hatching and mortality of Meloidogyne

javanica under in vitro conditions. In: Natural Resource Management, (eds.)

R.C. Dogra et al., pp. 158-163.

Vessey, J.K. 2003. Plant growth-promoting rhizobacteria as biofertilizers. Plant Soil,

255: 571-586.

Vidal-Dominguez, M.T., Azcon-Aguilar, C. and Barea, J.M. 1994. Preferential

sporulation of Glomus fasciculatum in the root nodules of herbaceous legumes.

Symbiosis, 16: 65-73.

Vidhyasekaran, P., Kamala, N., Ramanathan, A., Rajappan, K., Paranidharan, V., and

Velazhahan, R. 2001. Induction of systemic resistance by Pseudomonas

fluorescens Pf1 against Xanthomonas oryzae pv. oryzae in rice leaves.

Phytoparasitica, 29: 155-166.

273

Bibliography

Vierheilig, H. and Piche, Y. 2002. Signalling in arbuscular mycorrhiza: facts and

hypotheses. In: Flavonoids in Cell Function, (eds.) Buslig, B., Manthey, J.A.

Kluwer Academic/Plenum Publishers, New York, pp 23-39.

Vierheilig, H., Steinkellner, S., Khaosaad, T. and Garcia-Garrido, J.M. 2008. The

biocontrol effect of mycorrhization on soil-borne fungal pathogens and the

autoregulation of the AM symbiosis: one mechanism, two effects? In:

Mycorrhiza: Genetics and Molecular Biology, Eco-Function, Biotechnology,

Eco-Physiology, Structure and Systematics, (ed.) Varma, A. Springer-Verlag,

Heidelberg, 307-320.

Vikman, P.A. and Vessey, J.K. 1993. Ontogenic changes in root nodule sub-

populations of common bean (P. vulgaris L.). I. Nitrogenase activity and

respiration during pod filling. J. Exp. Bot. 44: 563-569.

Virtanen, A.I., Jorma, J., Linkola, H. and Linnasalmi, A. 1947. On the relation

between nitrogen fixation and leghaemoglobin content of leguminous root

nodules. Acta Chem. Scand. 1: 90.

Viswanathan, R. and Samiyappan, R. 2002. Induced systemic resistance by

fluorescent pseudomonads against red rot disease of sugarcane caused by

Colletotrichum falcatum. Crop Protect. 21: 1-10.

Vogelsang, K.M., Reynolds, H.L. and Bever, J.D. Mycorrhizal fungal identity and

richness determines the density and productivity of a tall grass prairie system.

New Phytol. 172: 554-562.

Volvas, N., Hava, F., Rapoport Rafael, M., Jimenez Diaz and Pablo Castillo, 2005.

Differences in feeding sites induced by root-knot namatodes, Meloidogyne spp.

in chickpea. Phytopathol. 95: 368-375.

Waceke, J.W., Waudo, S.W. and Sikora, R. 2001. Suppression of Meloidogyne hapla

by arbuscular mycorrhizal fungi (AMF) on pyrethrum in Kenya. Int. J. Pest

Manage. 47: 135-140.

Waceke, J.W., Wando, S.W. and Sikora, R. 2002. Effect of inorganic phosphatic

fertilizers on the efficacy of an arbuscular mycorrhiza fungus against a root knot

nematode in pyrethrum. Int. J. Pest. Manag. 48: 307-313.

Wadge, A. and Hutton, M. 1987. The leachability and chemical speciation of

selected trace elements in fly ash from coal combustion and refuse

incinerators. Environ. Pollut. 48: 85-99.

274

Bibliography

Walkey, A. and Black, I.A. 1934. An examination of the Degtijareff method for

determining soil organic matter and a proposed modification of the chromic acid

titration method. Soil Sci. 37: 29-38.

Wallace, H.R. 1969. The influence of nematode numbers and of soil particle size,

nutrients and temperature on the reproduction of Meloidogyne javanica.

Nematologica, 15: 55-64.

Waller, D.M. 1988. Biological control of soil borne plant pathogens in the

rhizosphere and bacteria. Annu. Rev. Phytopathol. 26: 379-407.

Waller, F., Achatz, B., Baltruschat, H., Fodor, J., Becker, K., Fischer, M., Heier, T.,

Huckelhoven, R., Neumann, C., Von Wettstein, D., Franken, P. and Kogel, K.H.

2005. The endophytic fungus Piriformospora indica reprograms barley to salt

stress tolerance, disease resistance, and higher yield. Proc. Natl. Acad. Sci. 102:

13386-13391.

Wani, P.A., Khan, M.S. and Zaidi, A. 2007. Cadmium, chromium and copper in

green gram plants. Agron. Sustain. Dev. 27: 145-153.

Weber, E., George, E., Beck, D.P., Saxena, M.C., Marschner, H. 1992. Vesicular-

arbuscular mycorrhizal and phosphorus uptake of chickpea grown in Northern

Syria. Exp. Agric. 28: 433-442.

Webster, J.M., 1972. Nematodes and biological control. In: Economic Nematology,

(ed.) Webster, J.M. Academic Press, London. pp. 469-496.

Wehner, J., Antunes, P.M., Powell, J.R., Mazukatow, M. and Rillig, M.C. 2010.

Plant pathogen protection by arbuscular mycorrhizas: a role for fungal

diversity? Pedobiologia, 53: 197-201.

Wei, J.Z., Hale, K., Carta, L., Platzer, E., Wong, C., Fang, S.C. and Aroian, R.V.

2003. Bacillus thuringiensis crystal proteins that target nematodes. Proc. Natl.

Acad. Sci USA. 100: 2760-2765.

Weinberger, K. 2003. The Impact of iron bio-availability-enhanced diets on the health

and productivity of school children: evidence from a mungbean feeding trial in

Tamil Nadu, India. In: International Conference on Impacts of Agricultural

Research and Development: Why has impact assessment research not made

more of a difference? (ed.) Watson, D.J. Mexico City: International Center for

Maize and Wheat Improvement.

275

Bibliography

Weiser, W. 1955. The attractiveness of plants to larvae of root knot nematode. I. The

effect of tomato seedlings and excised roots on Meloidogyne hapla Chitwood.

Proc. Helminth. Soc. Wash. 22: 106-112.

Wieser, W. 1956. The attractiveness of plants to larvae of root-knot nematodes. II.

The effect of excised bean, eggplant, and soybean roots on Meloidogyne hapla

Chitwood. Proceedings of the Helminthological Society of Washington 23: 59-

64.

Wenzel, W.W. 2009. Rhizosphere processes and management in plant-assisted

bioremediation (phytoremediation) of soils. Plant Soil, 321: 385-408.

Whiting, S.N., de Souza, M.P. and Terry, N. 2001. Rhizosphere bacteria mobilize Zn

for hyperaccumulation by Thlaspi caerulescens. Environ. Sci. Technol. 35:

3144-3150.

Wieczorek, K., Golecki, B., Gerdes, L., Heinen, P., Szakasits, D. and Durachko,

D.M. 2006. Expansins are involved in the formation of nematode-induced

syncytia in roots of Arabidopsis thaliana. Plant J. 48: 98-112.

Wiggers, R.J., Starr, J.L. and Price, H.J. 1990. DNA content and variation in

chromosome number in plant cells affected by Meloidogyne incognita and

Meloidogyne arenaria. Phytopathology, 80: 1391-1395.

Williams, I.E., Pitmann, J.K., and Hall, J.L. 2000. Emerging mechanism for heavy

metal transport in plants. Biochimica et Biophysica Acta, 1465: 104-126.

Williamson, V. 1998. Root- knot nematode resistance genes in tomato and their

potential for future use. Annu. Rev. Phytopathol. 36: 277-293.

Williamson, V.M. and Gleason, C.A. 2003. Plant-nematode interactions. Curr. Opin.

Plant Biol. 6: 327-333.

Winkler, R.D., Blevins, D.G., Pollacco, J.C. and Randall, D.D. 1987. Ureide

catabolism in soybeans. II. Pathway of catabolism in intact leaf tissue. Plant

Physiol. 83: 585-591.

Wong, M.H. and Wong, J.W.C. 1986. Effect of fly ash on microbial activity.

Environ. Pollut. 40: 127-144.

Wong, M.H. and Wong, J.W.C. 1989. Germination and seedling growth of vegetable

crops in fly ash amended soil. Agri. Eco. Environ. 26: 23-25.

276

Bibliography

Wong, P.P. and Sternberg, N.E. 1979. Characterization of Azospirillum isolates from

nitrogen fixing roots of harvested sorghum plants. Appl. Environ. Microbiol.

38: 1189-1191.

Wu, F.Y., Bi, Y.L. and Wong, M.H. 2009. Dual inoculation with an arbuscular

mycorrhizal fungus and Rhizobium to facilitate the growth of Alfalfa on coal

mine substrates. J. Plant Nutr. 32: 755-771.

Xavier, L. and Boyetchko, S. 2004. Arbuscular mycorrhizal fungi in plant disease

control. In: Fungal Biotechnology in Agricultural, Food, and Environmental

Applications, (eds.) Arora, D., Bridge, P., Bhatnagar, D. New York, Marcel

Dekker, Inc. pp 183-194.

Xavier, L.J.C. and Germida, J.J. 1997. Growth response of lentil and wheat to Glomus

clarum NT4 over a range of P levels in a Saskatchewan soil containing

indigenous AM fungi. Mycorrhiza, 7: 3-8.

Xavier, L.J.C. and Germida, J.J. 2003. Selective interaction between arbuscular

mycorrizal fungi and Rhizobium leguminosarum bv. Viceae enhance pea yield

and nutrition, Biol. Fertil. Soils, 37: 262-267.

Yang, R.S. and Tsou, S.C.S. 1998. Mungbean as a potential iron source in South

Asian diets. Proceedings of International Consultation Workshop on Mungbean.

Asian Vegetable Research and Development Center, Shanhua, Tainan, Taiwan,

pp. 152-158.

Yasmeen, N. 2002. Histopathological studies on Lagenaria leucantha infected with

Meloidogyne incognita and Pythium aphanidermatum in fly ash amended soil.

Ph.D. Thesis AMU, Aligarh.

Yoshiaki, S. and Kazuo, H. 2003. Current state of effectivecoal ash utilization in

Japan. In: Mat. X Miedzynarodowej Konfreneji, Popioly. Z energetyki” W-ma

14-17 XI, 71-86.

Young, C.C., Juang, T.C. and Chao, C.C. 1988. Effect of Rhizobium and VAM

inoculation on nodulation and soybean yield in sub-tropical fields. Biol. Fert.

Soils. 6: 165-169.

Youssef, M.M.A. and El-Nagdi, W.M.A. 2004. Assessment of faba bean damage

caused by Meloidogyne incognita root-knot nematode infection. Pak. J.

Nematol. 22: 47-53.

277

Bibliography

278

Zaidi, A., Khan, M.S. and Amil, M. 2003. Interactive effect of rhizotro 2-phic

microorganisms on yield and nutrient uptake of chickpea (Cicer arietinum L.).

Eur. J. Agron. 19: 15-21.

Zak, B. 1964. Role of mycorrhizae in root disease. Annu. Rev. Phytopathol. 2: 377-

392.

Zarei, M., Hempel, S., Wubet, T., Schafer, T., Savaghebi Gh, Jouzani GhS, Nekouei,

M.K. and Buscot, F. 2010. Molecular diversity of arbuscular mycorrhizal fungi

in relation to soil chemical properties and heavy metal contamination. Environ.

Pollut. 158: 2757-2765.

Zasada, I.A. 2005. Factors affecting the suppression of Heterodera glycines by N-

Viro soil. J. Nematol. 37: 220-225.

Zasada, I.A. and Tenuta, M. 2004. Chemical-mediated toxicity of N-Viro soil to

Heterodera glycines and Meloidogyne incognita. J. Nematol. 36: 297-302.

Zhang, L., Zhang, J., Christie, P. and Li, X. 2008. Pre-inoculation with arbuscular

mycorrhizal fungi suppresses root knot nematode (Meloidogyne incognita) on

cucumber (Cucumis sativus). Biol. Fert. Soils 45: 205-211.

Zhang, L.D., Zhang, J.L., Christie, P. and Li, X.L. 2009. Effect of inoculation with

the arbuscular mycorrhizal fungus Glomus intraradices on the root-knot

nematode Meloidogyne incognita in cucumber. J. Plant Nutr. 32: 967-979.

Zhu, Y., Sheaffer, C.C., Vance, C.P., Graham, P.H., Russelle, M.P. and Montealegre,

C.M. 1998. Inoculation and nitrogen affect herbage and symbiotic properties of

annual Medicago species. Agron. J. 90: 781-786.

Zimmer, D., Baum, C., Leinweber, P., Hrynkiewicz, K. and Meissner, R. 2009.

Associated bacteria increase the phytoextraction of cadmium and zinc from a

metal-contaminated soil by mycorrhizal willows. Int. J. Phytorem. 11: 200-213.

Zopf, W. 1888. Zur Kenntnis der Infektions-Krankheiten niederer Thiere und

Pflanzen. Nova Acta Leopold Carol, 52: 314-376.