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i REFERENCES Abbas, H., A. Hiol, V. Deyris, L. Comeau, 2002. Isolation and characterization of an extracellular lipase from Mucor sp. strain isolated from palm fruit. Enzyme Microb. Technol., 31: 968-975. Adenipekun, C. O and L. Q. Kassim, 2006. Effects of spent engine oil on the growth parameters and moisture content of Celosia argentea. Proceeding of the 15 th Annual Botanical Society of Nigeria Conference, University of Uyo, 108-111. Adenipekun, C.O., O. J. Oyetunji and L. Q. Kassim, 2009. Screening of Abelmoschus sculentus L. Moench for tolerance to spent engine. J. Appl. Biosci., 20:1131-1137. Adinarayana, K., K. V. V. S. N. Bapi Raju, M, I. Zargar, R. B. Devi, P. J. Lakshmi and P. Ellaiah, 2004.Optimization of process parameters for production of lipase in solid state fermentation by newly isolated Aspergillus species. Indian J. Biotechnol., 3: 65-69. Adinarayana, K., P. Ellaiah and D. S. Prasad, 2003. Purification and partial characterization of thermostable alkaline protease from a newly isolated Bacillus subtilis PE 11. AAPS Pharm Sci Tech., 4(4): 440-448. Ahmad, S. A., R. A. Al-domany, N. F.A. El-Shayeb, H. H. Radwan and S. A. Saleh, 2008.Optimization, immobilization of extracellular alkaline protease and characterization of its enzymatic properties. Res. J. Agric. Biol. Sci., 4: 434-446. Ahmed, I., M. A. Zia, T. Iftikar and H. M. Nasir Iqbal., 2011a. Characterization and detergent compatibility of purified protease produced from Aspergillus niger by utilizing agro wastes by utilizing agro wastes. BioRes., 6 (4): 4505-4522. Ahmed, I., M. A. Zia and H. M. N. Iqbal, 2011b. Purification and kinetic parameters characterization of an alkaline protease produced from Bacillus subtilis through submerged fermentation technique. World Appl. Sci. J., 12(6): 751-757. Akel, H., F. Al-Quadan and T. K. Yousef, 2009. Characterization of a purified thermostable protease from hyperthermophilic Bacillus Strain HUTBS71. Eur. J. Sci. Res., 31: 280-288. Aloulou, A., J. Rodriguez, D. Puccinelli, N. Mouz, J. Leclaire, Y. Leblond, and F. Carriere, 2007. Purification and biochemical characterization of the lipase from Yarrowia lipolytica LIP2 . Biochimica et Biophysica Acta., 1771: 228-237. Aly, M. M, S. Tork, S. M. Al-Garni and L. Nawar, 2012. Production of lipase from genetically improved Streptomyces exfoliates LP10 isolated from oil contaminated soil. Afr. J. Microbiol. Res., 6(6): 1125-1137.

Ronald M Atlas,1993 - Information and Library …shodhganga.inflibnet.ac.in/bitstream/10603/43864/14/14...iii Balagurunathan, R and A. Subramanian, 2001. Antagonistic Streptomyces

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REFERENCES

Abbas, H., A. Hiol, V. Deyris, L. Comeau, 2002. Isolation and characterization of an

extracellular lipase from Mucor sp. strain isolated from palm fruit. Enzyme Microb.

Technol., 31: 968-975.

Adenipekun, C. O and L. Q. Kassim, 2006. Effects of spent engine oil on the growth

parameters and moisture content of Celosia argentea. Proceeding of the 15th

Annual Botanical Society of Nigeria Conference, University of Uyo, 108-111.

Adenipekun, C.O., O. J. Oyetunji and L. Q. Kassim, 2009. Screening of Abelmoschus

sculentus L. Moench for tolerance to spent engine. J. Appl. Biosci., 20:1131-1137.

Adinarayana, K., K. V. V. S. N. Bapi Raju, M, I. Zargar, R. B. Devi, P. J. Lakshmi and P.

Ellaiah, 2004.Optimization of process parameters for production of lipase in solid

state fermentation by newly isolated Aspergillus species. Indian J. Biotechnol., 3:

65-69.

Adinarayana, K., P. Ellaiah and D. S. Prasad, 2003. Purification and partial characterization

of thermostable alkaline protease from a newly isolated Bacillus subtilis PE 11.

AAPS Pharm Sci Tech., 4(4): 440-448.

Ahmad, S. A., R. A. Al-domany, N. F.A. El-Shayeb, H. H. Radwan and S. A. Saleh,

2008.Optimization, immobilization of extracellular alkaline protease and

characterization of its enzymatic properties. Res. J. Agric. Biol. Sci., 4: 434-446.

Ahmed, I., M. A. Zia, T. Iftikar and H. M. Nasir Iqbal., 2011a. Characterization and

detergent compatibility of purified protease produced from Aspergillus niger by

utilizing agro wastes by utilizing agro wastes. BioRes., 6 (4): 4505-4522.

Ahmed, I., M. A. Zia and H. M. N. Iqbal, 2011b. Purification and kinetic parameters

characterization of an alkaline protease produced from Bacillus subtilis through

submerged fermentation technique. World Appl. Sci. J., 12(6): 751-757.

Akel, H., F. Al-Quadan and T. K. Yousef, 2009. Characterization of a purified thermostable

protease from hyperthermophilic Bacillus Strain HUTBS71. Eur. J. Sci. Res., 31:

280-288.

Aloulou, A., J. Rodriguez, D. Puccinelli, N. Mouz, J. Leclaire, Y. Leblond, and F. Carriere,

2007. Purification and biochemical characterization of the lipase from Yarrowia

lipolytica LIP2 . Biochimica et Biophysica Acta., 1771: 228-237.

Aly, M. M, S. Tork, S. M. Al-Garni and L. Nawar, 2012. Production of lipase from

genetically improved Streptomyces exfoliates LP10 isolated from oil contaminated

soil. Afr. J. Microbiol. Res., 6(6): 1125-1137.

ii

Amara, A. A and S. R. Salem, 2009. Degradation of castor oil and lipase production by

Pseudomonas aeruginosa. Americ. Euras. J. Agric. Environ. Sci., 5(4): 556-563.

*Anson, M. L., 1938. The estimation of pepsin, trypsin, papain and cathepsin with

hemoglobin. J. Gen. Physiol., 22: 79-89.

Anwar, A and M. Saleemuddin, 2000. Alkaline protease from Spilosoma obliqua: potential

applications in bio-formulations. Biotechnol. Appl. Biochem., 31: 85-91.

Anwar, T., A. Mathur, G. Mathur and R. S. Chauhan, 2011. Statistical optimization for co-

production and partial characterization of thermo-halotolerant lipase and amylase

from halotolerant Bacillus subtilis jpbw- 9. World J. Sci. Technol., 1(10): 54-63.

Aparna, A., G. Srinikethan and S. Hegde, 2011. Effect of addition of biosurfactant produced

by Pseudomonas sps. on biodegradation of crude oil. 2nd

Int. Conference on

Environ. Sci. Technol., IACSIT Press, Singapore.

APHA., 1998. Standards methods for the examination of water and waste water. American

Public Health Association, 19th edition, 1015, Fifteenth Street N.W. 10-150.

Arthe, R,. Rajendran, C. Balakumar, N. Pradeepa, E.M. Rajesh and S. Anitha, 2010.

Investigation of lipase production by Trichoderma reesei and optimization of

production parameters. EJEAF Che., 9 (7): 1177-1189.

Arunachalam, C and K. Saritha, 2009. Protease enzyme: an eco friendly alternative for

leather industry. Indian J. Sci. Technol., 2(12): 29-32.

*Atlas, R. M., 1993. Hand book of microbiological media, vol 1CRC press.

Attimarad, S, L., G. N. Ediga, A. A. Karigar, R. Karadi, N. Chandrashekhar, C. Shivanna,

2012. Screening, isolation and purification of antibacterial agents from marine

actinomycetes. Int. Curr. Pharm. J., 1(12): 394-402.

Awad, H. M., E. E. Mostfa, M. M. Saad, H. M. Selim and H. M. Hassan, 2012. Optimization

conditions of extracellular proteases production from a newly isolated Streptomyces

Pseudogrisiolus NRC-15. E. J. Chem., 9: 949-961.

Baba, S.U., A. Ibn, I. Nasir, 2012. Anaerobic digestion of cow dung for biogas production.

ARPN J. Eng. Appl. Sci. 7: 169-172.

Babu, I. S and G. H. Rao, 2007. Lipase production by Yarrowia lipoilytica NCIM 3589 in

sold state fermentation using mixed substrate. Res. J. Microbiol., 2(5): 467-474.

Baki, A. A., J. D. Anderson, 1973. Vigor determination in soyabean by multiple criteria.

Crop sci., 13: 630-633.

iii

Balagurunathan, R and A. Subramanian, 2001. Antagonistic Streptomyces from marine

sediments. Advance Biosci., 20: 71-76.

Balaji,V and P. Ebenezer, 2008. Optimization of extracellular lipase production in

Colletotrichum gloeosporioides by solid state fermentation. Indian J. Sci. Technol.,

1(7):1-8.

Balasubramanian, S and V. Pugalenthi, 2000. A comparative study of the determination of

sulphide in tannery waste water by ion selective electrode (ISE) and iodimetry.

Water Res., 34: 4201- 4206.

Bapiraju, K.V.V.S.N., P. Sujatha, P. Ellaih, T. Ramana, 2004. Screening of oil seed cakes

for isolation of lipolytic fungi and parametric optimization of lipase production by

the selected isolate Rhizopus sp. BTS-24. Asi. J. Microbiol. Biotechnol. Environ.

Sci., 6: 735-740.

Barrera, M., Liliana. C. Urbina and Eliseo, 2008. Hexavalent chromium removal by

Trichoderma inhamatum fungal strain isolated from tannery effluent. Water. Air.

Soil Pollut., 187: 327 -335.

Baskaran, R., R. Vijayakuma and P. M. Mohan, 2011. Enrichment method for the isolation

of bioactive actinomycetes from mangrove sediments of Andaman Islands, India.

Malay. J. Microbiol., 7(1): 26-32.

Bayoumi, R. A and A.S.Bahobil, 2011. Production of thermoalkaliphilic protease by

Shewanella putrefaciens-EGKSA21under optimal conditions for application in

biodetergent technology. J. Basic. Appl. Sci. Res., 1(2): 95-107.

Benazir J. F., Suganthi, A. Hari, R. Kumar, V. Aswathi, M. P. Niraimathi, G. Mala, M.K.

Sukanya, S. Santhi, 2011. Bio utilization of agroindustrial waste in solid state

fermentation by Aspergillus niger for the production of protease. Asi. J. Biotech.

Res., 2(04): 422-435.

Benazir, J. F., R. Suganthi, D. Rajvel, M. P. Pooja and B. Mathithumilan, 2010.

Bioremediation of chromium in tannery effluent by microbial consortia. Afr. J.

Biotechnol., 9 (21): 3140-3143.

Berdy, J., 2005. Bioactive microbial metabolites. J. Antibiot., 5(8): 1-26.

Bergey D. H and John G. Holt, 1989. Bergey's manual of systematic bacteriology, Volume

4, Williams and Wilkins, Pennsylvania State University.

Bestawy, E., M. H. El-Masry, and N. E. El-Adl, 2005. The potentiality of free gram-

negative bacteria for removing oil and grease from contaminated industrial effluents.

World. J. Microbiol. Biotechnol., 21: 815-822.

iv

Bhargav, S., B. P. Panda, M. Ali and S. Javed, 2008. Solid-state fermentation: An overview.

Chem. Biochem. Eng. Q., 22: 49-70.

Bhumibhamon, O., A. Koprasertsak and S. Funthong, 2002. Biotreatmentof high fat and oil

waste water by lipase producing microorganisms. Kasetsart J. Nat. Sci., 36:

261 - 267.

Boominadhan, U and R. Rajakumar, 2009. Optimization of protease enzyme production

using Bacillus Sp. isolated from different wastes. Bot. Res. Int., 2(2): 83-87.

Bruins, M.R., S. Kapil, F. W. Oechme, 2000. Microbial resistance to metallothionein in the

environment. J. Environ. Microbiol. 45(1): 351- 364.

Bruno, W. J., Socci, N, D and A. L. Halpern, 2000. Weighted Neighbor Joining: A

likelihood-based approach to distance-based phylogeny reconstruction. Mol. Biol.

Evol., 17(1): 189- 197.

Bull, A.T., A. C. Ward and M. Goodfellow, 2000. Search and discovery strategies for

biotechnology: the paradigm shift. Microbiol. Mol. Biol. Rev. 64: 573- 606.

Cardenas, F., E. Alvarez, M. S. De Castro-Alvarez, J. M. Sánchez-Montero, S. Elson and

J. V. Sinisterra, 2001. Three new lipases from actinomycetes and their use in organic

reactions. Biocat. Biotrans., 19 (4) : 315-329.

Chakraborty, K and R. P. Raj, 2008. An extra-cellular alkaline metallolipase from Bacillus

licheniformis MTCC 6824: Purification and biochemical characterization. Food

Chem., 109: 727–736.

Chardin, B., A. Dolla, F.Chaspoul, M. L.Fardeau, P.Gallice and M.Bruschi, 2002.

Bioremediation of chromate: Thermodynamic analysis of the effects of Cr (VI) on

sulfate-reducing bacteria. Appl. Microbiol. Biotechnol., 60: 352-360.

Chaturvedi, M., M. Singh, C. R. Man and S. Pandey, 2010. Lipase production from Bacillus

subtilis MTCC 6808 by solid state fermentation using ground nut cake as substrate.

Res. J. Microbiol., 5(8): 725-730.

Cheung, K. H and J. D. Gu, 2003. Reduction of chromate (CrO4 2-

) by an enrichment

consortium and an isolate of marine sulfate-reducing bacteria. Chemosphe.,

52: 1523-1529.

Chidambaram, A., P. Sundaramoorthy, A. Murugan, K. SankerGanes, L.Baskaran, 2009.

Chromium induced cytotoxicity in black gram (Vigna mungo). Iran. J. Environ.

Health. Sci. Eng., 6: 17-22.

Chou, C. H., Y.C. Chiang and C.I. Rao, 1978. Impact of water pollution on crop in Taiwan

II. Phytotoxic nature of six rivers and twenty seven industrial wastewaters in

Keohaiung area. Taiwan Bot. Bull. Academic Sinica, 19: 107-124.

v

Christova, N., B. Tulevaa, and B. N. D., 2004. Enhanced hydrocarbon biodegradation by a

newly isolated Bacillus subtilis strain. Z. Naturforsch. 59: 205-208.

Chu, W. H., 2007. Optimisation of extracellular alkaline protease production from species of

Bacillus. J. Ind. Microbiol. Biotechnol. 34: 241-245.

Dahiya, A. N., R. P. Tiwari, and G. S. Hundal, 2006. Production of extracellular lipase by

Bacillus megaterium AKG-1 in submerged fermentation. Indian J. Biotechnol.,

5: 179-183.

Dayanandan, A., S. H. V. Rani, M. Shanmugavel, A. Gnanamani and G. Suseela Rajakumar,

2012. Solid state bioprocessing for scale up of Aspergillus tamarii MTCC5152 lipase

and its degreasing effect on cow hide. Indian J. Sci. Technol., 5(7): 2978

Debananda, S., Ningthoujam, P. Kshetri, S. Sanasam and S. Nimaichand, 2009. Screening,

identification of best producers and optimization of extracellular proteases from

moderately halophilic alkalithermotolerant indigenous actinomycetes. World Appl.

Sci. J., 7 (7): 907-916.

Dhanam, S., 2009. Effect of dairy effluent on seed germination, seedling growth and

biochemical parameter in paddy. Bot. Res. Int., 2(2): 61-63.

Dhanasekaran, D., A. Panneerselvam and N. Thajuddin, 2008. An antifungal compound: 4'

phenyl-1-napthyl–phenyl acetamide from Streptomyces spp. DPTB16. Facta

Universitatis Series: Med. Biol. 15 : 7-12.

Dharmendra K. and D. K. Parihar, 2012. Production of lipase utilizing linseed oilcake as

fermentation substrate. Int. J. Sci. Environ. Technol., 1(3): 135-143.

Di Luccio, M., F. Capra, N. P. Ribeiro, G. D. L. P.Vargas, D. M. G. Freire and D. De

Oliveira, 2004. Effect of temperature, moisture, and carbon supplementation on

lipase production by solid-state fermentation of soy cake by Penicillium

simplicissimum. Appl. Biochem. Biotechnol. 113-116.

Diaz J. C. M., J.A. Rodriguez, S. Roussos, J. Cordova,A. Abousalham, F. Carriere,

J. Baratti, 2006. Lipase from the thermotolerant fungus Rhizopus homothallicusis

more thermostable when produced using solid state fermentation than liquid

fermentation procedures. Enz. Microb. Technol., 39: 1042-1050.

Divakar, G., M. Sunitha, P. Vasu, P. U. Shankar and P. Ellaiah, 2006. Optimization of

process parameters for alkaline protease production under solid-state fermentation by

Thermoactinomyces thalpophilus PEE 14. Indian. J. Biotechnol., 5: 80-83.

vi

Dodia M. S, R.H Joshi, R.K Patel and S. P, Singh (2006). Characterization and stability of

extracellular alkaline protease from halophilic and alkaliphilic bacteria isolated from

saline habitat of coastal Gujarat, India. Brazil. J. Microbiol. 3(37): 276-282.

Donia, M and M. T. Hamann, 2003. Marine natural products and their potential applications

as anti-infective agents. Lancet Infect Dis. 3(6): 338-48.

Dsouza, N. M., A. J. Mawson, 2005. Membrane cleaning in the dairy industry: A review.

Crit. Rev. Food. Sci. Nutr., 45: 125-134.

Dubey, R., S. Adhikary, J. Kumar and N. Sinha, 2010. Isolation, production, purification,

assay and characterization of alkaline protease enzyme from Aspergillus niger and

its compatibility with commercial detergents. Develop. Microbiol. Mol. Biol.,

1(1): 75-94.

Ekpo, M. A and U. S. Udofia, 2008. Rate of biodegradation of crude oil by microorganisms

isolated from oil sludge environment. Afr. J. Biotechnol., 7(24): 4495-4499.

Elaiyaraju, P and N. Partha, 2012. Biogas production from co-digestion of orange peel waste

and jatropha de-oiled cake in an anaerobic batch reactor. Afr. J. Biotechnol.,

11(14): 3339-3345.

Ellaiah, P., D. Kalyan, V.S Rao and B.V Rao, 1996. Isolation and characterization of

bioactive actinomycetes from marine sediments. Hindustan Antibiot. Bull.,

38: 48-52.

Emtiazi, G., M. H. Habibi and A. R. Taheri, 2003. Production of thermostable extracellular

lipase by Pseudomonas grown on cotton cake and cod removal of sunflower oil

waste. Fresenius Environ. Bull., 12 : 704-708.

Euzéby, J. P., 2008. Genus Streptomyces. List of Prokaryotic names with Standing in

Nomenclature.

Ezcurra, A. I., O. Zarate, P. V. Dhin and J. P. Lacaux, 2001. Cereal waste burning pollution

observed in the town of Vitoria (northern Spain). Atmosph. Environ.,

35 : 1377-1386.

Falony, G., J. C. Armas, J. C. D. Mendoza and J. L. M. Hernández, 2006. Production of

extracellular lipase from Aspergillus niger by solid-state fermentation. Food

Technol. Biotechnol., 44(2): 235–240.

Felsenstein, J., 1985. Confidence limits on phylogenies: An approach using the bootstrap.

Evolution., 39: 783-791.

vii

Fiedler, H. P., C. Bruntner, A. T. Bull, A. C. Ward, M. Goodfellow, O. Potterat, C. Puder,

G. Mihm, 2005. Marine actinomycetes as a source of novel secondary metabolites.

Antonie Van Leeuwenhoek., 87 : 37-42.

Fulzele. R., E. De Sa, A. Yadav, Y. Shouche, R. Bhadekar, 2011. Characterization of novel

extracellular protease produced by marine bacterial solate from the Indian Ocean.

Brazilian J. Microbiol., 42 : 1364-1373.

Gaikar, R. B., B. K. Uphade, A. G. Gadhave and S. R. Kuchekar, 2010. Effect of dairy

effluent on seed germination and early seedling growth of soyabeans. RASAYAN. J.

Chem., 3(1): 137-139.

Germano, S., A. Pandey, C. A. Osaku, S. N. Rocha, C. R. Soccol, 2003. Characterization

and stability of proteases from Penicillium sp. Produced by solid-state fermentation.

Enz. Microbial Technol., 32 : 246-251.

Gesheva, V., V. Ivanova, R. Gesheva, 2005. Effects of nutrients on the production of AK -

111 - 81 macrolide antibiotic by Streptomyces hygroscopicus. Microbiol. Res.,

160: 243 - 248.

Ghori, M. I., J. Iqbal and A. Hameed, 2011. Characterization of a novel lipase from Bacillus

sp. isolated from tannery wastes. Braz. J. Microbiol. 42: 22-29.

Ginalska, G., R . Bancerz and T. Kornillowicz-Kowalska, 2004. A thermostable lipase

production by a newly isolated Geotrichum like strain R59. J. Ind. Microbiol.

Biotechnol., 31: 177-182.

Goel, G and S. Kaur., 2012. A study on chemical contamination of water due to household

laundry detergents. J. Hum. Ecol, 38(1): 65-69.

Gottlieb, D., 1961. An evaluation of criteria and procedures used in the description and

characterization of Streptomyces: A cooperative study. Appl. Microbiol., 9: 55-65.

Griebeler, N., A. E. Polloni, D. Remonatto, F. Arbter, R. Vardanega and J. L. Cechet, 2009.

Isolation and screening of lipase producing fungi with hydrolytic activity. Food and

Bioprocess Technology. (doi:10.1007/s11947-008-0176-5).

Gulati, R., J. Isar, V. Kumar, A. K. Prasad,V. S. Parmar, and R. K. Saxena, 2005. Production

of a novel alkaline lipase by Fusarium globulosum using neem oil, and its

applications. Pure Appl. Chem., 77: 251-262.

Gulve, R. M, and A. M. Deshmukh, 2012. Antimicrobial activity of the marine

actinomycetes. Int. Multidisciplin. Res. J., 2(3): 16-22.

viii

Gunalakshmi, B., K. S. Maloy, K. K. Siva, S. Sudha, L. Kannan, 2008. Investigation on

lipase producing actinomycete strain LE11 from shrimp pond. J. Microbiol.,

3: 73-81.

Gunasekaran, V., S. M. Kotay and D. Das, 2006. Alkaline lipase production by Citrobacte

rfreundii IIT-BT L139. Indian J. Experim. Biol., 44: 485-491.

Gupta, K., S. Gaumat and K. Mishra, 2012. Studies on phyto-genotoxic assessment of

tannery effluent and chromium on Allium cepa. J. Environ. Biol., 33: 557-563.

Gupta, R., Q. K. Beg and P. Lorenz, 2002. Bacterial alkaline proteases: Molecular

approaches and industrial applications. Appl. Microbiol . Biotechnol., 59 : 15-32.

Guravaiah, M., T. Prabakar, C. H. Prameela, C. H. Shanthosi Kumari and M. V. Guravaiah,

2010. Screening, isolation and production of protease by marine actinomycetes. Adv.

Biotech., 10: 7-13.

Gutarra, M. L. E., E. D. C. Cavalcanti, L. R. Castilho, D. M. G. Freire, G. L. Santnna, 2005.

Lipase production by solid-state fermentation: cultivation conditions and operation

of tray and packed-bed bioreactors. Appl. Biochem. Biotechnol. Eng.

Biotechnol.121-124.

Hasan, F and A.Hameed, 2001. Optimization of lipase production from Bacillus sp. Pak. J.

Bot., 33: 769-796.

Hasan, F. A. A. Shah, S. Javed and A. Hameed, 2010. Enzymes used in detergents: Lipases.

Afr. J. Biotechnol. 9 (31): 4836-4844.

Hasan, F., A. A. Shah and A.Hameed, 2006. Industrail applications of microbial lipases.

Enzyme Microb. Technol. 39: 235-251.

Hayakawa, M., T. Sadaka, T. Kayiura, and H. Nonomura, H, 1991. New methods for the

highly selective isolation Micromonospora and Microbispora. J. Ferment. Bioeng.,

72: 320-326.

Hozzein, W. N., M. B. Ahmed and M. S. A. Tawab, 2012. Efficiency of some actinomycete

isolates in biological treatment and removal of heavy metals from wastewater. Afr.

J. Biotechnol., 11(5): 1163-1168.

Hur, J., B. M. Lee, T. H. Lee and D. H. Park, 2010. Estimation of biological oxygen demand

and chemical oxygen demand for combined sewer systems using synchronous

fluorescence spectra. Sensors., 10 : 2460-2471.

Iftikhar, T., M. Niaz, M. A.Zia, R.Jabeen and M. N. Aftab, 2011. Biosynthesis of

extracellular lipases by Bacillus sp. (mblb-3) in relation to the nutritional conditions.

Pak. J. Bot., 43(5): 2587-2591.

ix

Imandi, S. B., S. K. Karanam, H. R. Garapati, 2010. Optimization of process parameters for

the Production of lipase in solid state fermentation by yarrowia lipolytica from niger

seed oil cake (Guizotia abyssinica). J. Microbial. Biochem. Technol. 2: 028-033.

Indra. P and R. Mycin, 2010. Inhibition of toxic pollutants from tannery effluent by using

AM fungi and its response on green gram (Vigna radiata L.). Int. J. Curr.

Research., 4: 142-145.

Ingole, S. P., A. U. Kakde and R.C. Maggirwar, 2012. Biodegradation of tannery effluent by

using tannery effluent isolate. Int. Multidis. Res. J., 2(3): 43-44.

Irfan, E.A and S. Akinici, 2010. Effect of chromium toxicity on germination andearly

seedling growth in melon (Cucumismelo L.). Afr. J. Biotechnol., 9: 4589-4594.

Islam, M. A., F. Parveen , K. Hossain, S. Khatun, Md. R. Karim G.S. Kim, N. Absar and

Md. S. Haque, 2009. Purification and biochemical characterization of lipase from the

dorsal part of Cirrhinus reba. Thai J. Agricul. Sci., 42(2): 71-80.

Iyagba, E. T., A. Ibifuro, Mangibo and Y. S. Mohammad, 2009. The study of cow dung as

co-substrate with rice husk in biogas production. Sci. Res. Ess.,4 (9): 861-866.

Jain, P. K., R. Jain, P. C. Jain, 2004. Production of industrially important enzymes by some

actinomycetes producing antifungal compounds. Hindus. Antibiot. Bull. 45-46

(1-4): 29-33.

Jani, S.A., J. Chaitanya, Chudasama, D. B. Patel, P. S. Bhatt,H. N. Patel, 2012.Optimization

of extracellular protease production from alkalithermo tolerant actinomycetes:

Saccharomonospora viridis SJ-21. Bull. Environ. Pharmacol. Life Sci., 1 (6):

84 -92.

Jaouadi, B. B., D. Abdelmalek, F. Z. Fodil, H. Ferradji, N. Rekik, Zaraî and S. Bejar (2010).

Purification and characterization of a thermostable keratinolytic serine alkaline

proteinase from Streptomyces sp. strain AB1 with high stability in organic solvents.

Biores. Technol., 101(21): 8361-8369.

Jayasree, D., T. D. S. Kumari, P. B. K. Kishor, M. V. Lakshmi, M. L. Narasu, 2009.

Optimization of production protocol of alkaline protease by Streptomyces

pulvereceus. Inter. J. Res, Sci. and Technol., 1(2):79-82.

Jensen, P. R., E. Gontang, C. Mafnas, T. J. Mincer and W. Fenical, 2005. Culturable marine

actinomycetes diversity from tropical Pacific Ocean sediments. Appl. Environ.

Microbiol., 7: 1039-1048.

Jones, K. L., 1949. Fresh isolates of actinomycetes in which the presence of sporogenous

aerial mycelia is a fluctuating characteristic. J. Bacteriol., 57: 141-145.

x

Joo, H. S., C. G. Kumar, G. C. Park, K. T. Kim, S. R. Paik and C. S. Chang, 2002.

Optimization of the production of an extracellular alkaline protease from Bacillus

horikoshii. Process Biochem., 38: 155–159.

Joo, H. S., C. G. Kumar, G. C. Park, S. R. Paik and C. S. Chang, 2003. Oxidant and SDS-

stable alkaline protease from Bacillus clausii I-52: production and some properties.

J. Appl. Microbiol. 95: 267–272.

*Joseph, B., P. W.Ramteke, G. Thomas, N. Shrivastava, 2007. Standard Review Cold-active

microbial lipases a versatile tool for industrial applications. Biotechnol. Mol. Biol.

Rev., 2: 39-48.

Kampfer, P., 2006. "The Family Streptomycetaceae, Part I: Taxonomy". The prokaryotes: a

handbook on the biology of bacteria. Berlin: Springer. 538-604.

Kanekar, P. P., S.S. Nilegaonkar, S. S. Sarnaik, A.S. Kelkar, 2002. Optimization of protease

activity of alkaliphilic bacteria isolated form an alkaline lake in India. Biores.

Technol., 85: 87-93.

Kannan, A. R and R. K. Upreti, 2008. Influence of distillery effluent on germination and

growth of mungbean (Vigna radiate) seeds. J. Hazard. Mater., 153: 609-615.

Kannan. V., M. Vijayasanthi, M. Chinnasamy, 2012. Bioremediation of chromium in

tannery effluent by filamentous Cyanobacteria Anabaena flos-aquae West. Int. J.

Environ. Sci., 2(4): 2360-2366.

Kapadiya, S., P. Shilpkar and M. Shah, 2010. Biogas potential of tobacco (Nicotiana

tabacum) stem waste. J. Adv. Dev. Res., 1(1): 53-58.

Kashyap, D. R., K. S. Dadhich, S. K. Sharma, 2003. Biomethanation under psychrophilic

conditions: a review. Biores. Technol., 87: 147–153.

Katsifas, E.A., T.G. Koraki and A.D. Karagoun, 2000. Determination of metabolic activity

of streptomycetes in soil microcosms. J. Appl. Microbiol., 89: 178 -184.

Kawato, M and R. Shinobu, 1959. On Streptomyces herbaricolor sp. nov., supplement: a

single technique for microscopical observation. Mem Osaka Univ Lib Arts Educ B

Nat Sci 8: 114-119.

Keller, F. A., J. E. Hamilton and Q. A. Nguyen, 2003. Microbial pretreatment of biomass

potential for reducing severity of thermo-chemical biomass pretreatment. Appl.

Biochem. Biotechnol., 105: 27-41.

xi

Khoo, M. L and C. O. Ibrahim, 2009. Lipase from thermoalkalophilicPseudomonas species

as an additive in potential laundry detergent formulations. Malaysian J. Microbiol.,

5(1): 1-5.

Khoramnia, A.,A.Ebrahimpour, B. K. Beh and O. M. Lai, 2011. Production of a Solvent,

detergent, and thermotolerant lipase by a newly isolated Acinetobacter sp. in

submerged and solid-state fermentations. J. Biomed. Biotechnol., pp.1-12.

Kieser, T., M. J. Bibb, M. J. Buttner, K. F. Chater and D. A. Hopwood, 2000. Practical

Streptomyces Genetics (2nd ed.). Norwich, England: John Innes Foundation.

Kuberan, T., S. Sangaralingam, and V.ThirumalaiArasu, 2010. Isolation and optimization of

protease producing bacteria from Halophilic soil. J. Bio sci. Res ., 1(3): 163-174.

Kumar, M. D. J., L. Lawrence, R. Rajan , S. Priyadarshini , Sandhiyachittybabu, P .T.

alaichelvan, 2012. Characterization of lipase and protease from Serratia marcescens

DEPTK21 and its destaining capability. Asian J. Exp. Biol. Sci. 3 (3): 621-628.

Kumar, P. P. K., Mathivanan V, Karunakaran M, Renganathan S, Sreenivasan R. S (2008).

Studies on the effects of pH and incubation period on protease production by

Bacillus sp. using groundnut cake and wheat bran. Indian J. Sci. Technol., 1:1-4.

Kumar, R., A. Sharma, A. Kumar and D. Singh, 2012. Lipase from Bacillus pumilus RK31:

Production, Purification and Some Properties. World Appl. Sci. J., 16(7): 940-948.

Kumar, S. S., L. Kumar, V. Sahai, R. Gupta, 2009. A thiol-activated lipase from

Trichosporonasahii MSR 54: detergent compatibility and presoak formulation for oil

removal from soiled cloth at ambient temperature. J. Ind. Microbiol. Biotechnol.,

36: 427-432.

Kuster, E. 1959. Outline of a comparative study of criteria used in characterization of the

characterisation of the actinomycetes. Int Bull Bacteriol Nomencl Taxon: 9,

97-104.

Kuster, E. and S. Williams, 1964. Selection of media for isolation of streptomycetes.

Nature, 202: 928-929.

Laemmli, U. K, 1970. Cleavage of structural proteins during the assembly of the head of

bacteriophage T4. Nature., 227: 680-185.

Lam, K. L., 2006. Discovery of novel metabolites from marine actinomycetes. Curr. Opi.

Microbiol., 9: 241-255.

Lazim, H., H. Mankai, N. Slama, I. Barkallah, F. Limam, 2009. Production and

optimization of thermophilic alkaline protease in solid-state fermentation by

Streptomyces sp. CN902. J. Ind. Microbiol. Biotechnol., 36: 531-537.

xii

Liang, G. Z., W. Y. Ting, Q. Xin, M. Qin, 2005. Biodegradation of crude oil by

Pseudomonas aeruginosa in the presence of rhamnolipids. J Zhejiang Univ. Sci.,

6(8): 725-730

Lin, Y., X. Wanga, B. Wang, O. Mohamada, G. Wei, 2012. Bioaccumulation

characterization of zinc and cadmium by Streptomyces zinciresistens, a novel

actinomycete. Ecotoxicol Environ. Saf., 77: 7-17.

*Lineweaver, H and D. Burk., 1934. The determination of enzyme dissociation constants. J.

Am. Chem. Soc., 56: 658-666.

Lowry, O. H., N. J. Rosebrough, A. L. Farr and R. J. Randal, 1951. Protein measurement

with Folin phenol reagent. J. Biol. Chem., 193: 265 - 275.

Luostarinen, S., Luste and M. Sillanpaa, 2009. Increased biogas production at wastewater

treatment plants through co-digestion of sewage sludge with grease trap sludge from

a meat processing plant. Biores. Technol., 100: 79-85.

Luste, S., S. Luostarinen and M. Sillanpaa, 2009 . Effect of pre-treatments on hydrolysis and

methane production potentials of by-products from meat processing industry. J.

Hazard Mater., 164: 247-255.

Madigan, M., J. Martinko (eds.), 2005. Brock Biology of Microorganisms (11th ed.).

Prentice Hall.

Magarvey, N.A., J. M. Keller, V. Bernan, M. Dworkin, D. H. Sherman, 2004.Isolation and

characterization of novel marine-derived actinomycete taxa rich in bioactive

metabolites.

Maldonado, L. A., J. E. M. Stach, W. Pathom-aree, A. C. Ward, A. T. Bull, M. Goodfellow,

2005. Diversity of cultivable actinobacteria in geographically widespread marine

sediments. Antonie Van Leeuwenhoek., 87: 11-18.

Malla and B. K. Mohanty, 2005. Effect of paper mill effluent on germination of greengram

(Phaseolus aureus roxb.) and growth behaviour of seedlings. J. Environ. Biol., 26:

379- 382.

Maniatis, T., E. F. Fritsch, and J. Sambrook, 1982. Molecular cloning, a laboratory manual.

Cold Spring Harbor: Laboratory.

Manjunathan, J., P. M. Ayyasamy and V. Kaviyarasan, 2011. Effect of microbially treated

industry effluent on the growth of green gram (Phaseolus aureus-roxb). Int. J.

Pharm. Bio. Sci., 2 (1): 262-271.

xiii

Manu K. J., M. M. V. Kumar and V. S. Mohana, 2012. Effect of dairy effluent (treated and

untreated) on seed germination, seedling growth and biochemical parameters of

maize (Zea mays L.). Int. J. Res. Chem. Environ., 2(1): 62-69.

Marinescu, M., M. Toti, V. Tanase, G. Plopeanu, I. Calciu, M. Marinescu, 2011. The effects

of crude oil pollution on physical and chemical characteristics of soil. Res. J. Agri.

Sci., 43 (3):125-129.

Marmur, J., 1961. A procedure for the isolation of Deoxyribonucleic acid from micro

organisms. J. Mol. Biol., 3: 208-18.

Masse, L., K. L. Kennedy, S. Chou, 2001. Testing of alkaline and enzymatic hydrolysis

pretreatments for fat particles in slaughterhouse wastewater. Biores. Technol. 77:

145-155.

Mathew, J., M. S. Latha and P.C. Ravindran, 2005. Production of alkaline protease from

Bacillus pumillus K242 by solid state fermentation. Asi. J. Microbiol. Biotech.

Env. Sci., 7(3): 617-621.

*Matsumoto, S.T., S.M. Mnlovani, M.I.A. Malaguttii, A.L. Dias, I.C. Fonseca and M.A.M.

Morales, 2006. Genotoxicity and mutagenicity of water contaminated with tannery

effluent, as evaluated by the micro nucleus test and comet assay using the fish

Oreochromisniloticus and chromosome aberrations in onion root tips. Gen. Mol.

Biol., 29: 148-158.

McLean, J and T. J. Beveridge, 2001. Chromate reduction by a Pseudomonas isolated from

a site contaminated with chromate copper arsenate. Appl. Environ. Microbiol., 67:

1076-1084.

Meintanis, C., I. Kalliopi, Chalkou, K. Kormas and A. D. Karagouni, 2006. Biodegradation

of crude oil by thermophilic bacteria isolated from a volcano island. Biodegrad., 1-7

Mendes, A. A and H. F. De Castro, 2005. Effect on the enzymatic hydrolysis of lipids

from dairy wastewater by replacing gum arabic emulsifier for sodium chloride.

Braz. Arch. Biol. Technol., 48, 135-142.

Miah, M. S., C. Tada, Y. Y. S. Sawayama, 2005. Aerobic thermophilic bacteria enhance

biogas production. J. Mater. Cyc. Waste Manag., 7 : 48–54.

Midha, V and A. Dey, 2008. Biological treatment of tannery wastewater for sulfide removal.

Int. J. Chem. Sci., 6(2): 472-486.

Mienda, S. B., A. Idi, A. Umar, 2011. Microbiological features of solid state fermentation

and its applications. An overview. Res. Biotechnol., 2: 21-26.

xiv

Mincer, T. J., W. Fenical, P. R. Jensen, 2005. Culture-dependent and culture-independent

diversity within the obligate marine actinomycete genus Salinispora. Appl. Environ.

Microbiol., 71: 7019-7028.

Mishra, K. G. S. G. K., 2012. Studies on phyto-genotoxic assessment of tannery effluent and

chromium on Allium cepa. J. Environ. Biol., 33: 557-563.

Mishra, N and L. K. Singh, 2008. Comparative studies to determine the effect of the media

constituents for acid protease production by submerged fermentation. Asian J.

Microbiol. Biotechnol. Environ. Sci., 10(3): 509-513.

Mishra, N and L. K. Singh, 2008. Comparative studies to determine the effect of the media

constituents for acid protease production by submerged fermentation. Asian

J.Microbiol.Biotech. Env. Sci., 10 (3): 509-513.

Mitra, P and P. K. Chakrabarrty, 2005. An extracellular protease with depilation activity

from Streptomyces nogalator. J. Sci. Ind. Res., 64: 978-983.

Mohamed, M. I., Helal, H. Amer, A. M. Nayera, Abdelwahed and M. O. I. Ghobashy, 2012.

Physiological and microbiological studies on production of alkaline protease from

locally isolated Bacillus Subtilis. Aus. J. Basic Appl. Sci., 6(3): 193-203.

Mohan T. S., A. Palavesam and G. Immanvel, 2008.Isolation and characterization of lipase-

producing Bacillus strains from oil mill waste. Afr. J. Biotechnol., 7 (15):

2728-2735.

Mohanraj, G and T. Sekar, 2013. Isolation and screening of actinomycetes from marine

sediments for their potential to produce antimicrobials. Int. J. Life. sci. Bt. Pharm.

Res., 3:115-126

Mongkolthanaruk, W., S. Dharmsthiti, 2002. Biodegradation of lipid-richwastewater by a

mixed bacterial consortium. Int. Biodeter. Biodeg., 50: 101 – 105.

Mouneimne, A. H., H. Carrere, N. Bernet and J. P. Delgenes, 2003. Effect of saponification

on the anaerobic digester of solid fatty residues. Biores. Technol., 90: 89-94.

Mshandetem, A. M and W. Parawira, 2009. Biogas technology research in selected sub-

Saharan African countries – A review. Afr. J. Biotechnol., 8: 116-125.

Mukherjee, A. K., H. Adhikari, S. K. Rai, 2008. Production of alkaline protease by a

thermophilic Bacillus subtilis under solid-state fermentation (SSF) condition using

Imperata cylindrica grass and potato peel as low-cost medium: Characterization and

application of enzyme in detergent formulation. Biochem. Engg. J., 39(2): 353-361.

xv

Mukhtar, H and I. U. Haq, 2008. Production of alkaline protease by Bacillus subtilis and its

application as a depilating agent in leather processing. Pak. J. Bot., 40(4):

1673-1679.

Murthy, P. S and M. Naidu, 2010. Protease production from Aspergillus oryzae in solid state

fermentation utilizing coffee byproducts. World Applied Sci. J., 8(2): 199-205.

Muthulakshmi, C., D. Gomathi, D. G. Kumar, G. Ravikumar, M. Kalaiselvi and C. Uma,

2011. Production, Purification and Characterization of Protease by Aspergillus flavus

under Solid State Fermentation. J. Biol. Sci., 4: 137 – 148.

Mythili, B and M. P. Ayyappa Das, 2011. Studies on antimicrobial activity of Streptomyces

spp. isolates from tea plantation soil. Res. J. Agric Sci., 2: 104-106.

Mythili, K and B. Karthikeyan, 2011. Bioremediation of tannery effluent and its impact on

seed germination (blackgram and sunflower). Curr. Bot., 2(8): 40-45.

Nascimento, W. C. A and Martins, M. L. L, 2004. Production and properties of an

extracellular protease from thermophilic Bacillus sp. Braz. J. Microbiol., 35: 91-96.

Nehra, K. S., S. Dhillon, K. Chaudhary and R. Singh, 2002. Production of alkaline protease

by Aspergillus species under submerged and solid state fermentation. Ind. J.

Microbiol., 42: 43-47.

Nilegaonkar, S. S., V. P. Zambare, P. P. Kanekar, P. K. Dhakephalkar, S. S. Sarnaik, 2007.

Production and partial characterization of dehairing protease from Bacillus Cereus

MCM B-326. Biores. Technol., 98: 1238–1245.

Ningthoujam D.S and P. Kshetri, 2010. A thermostable alkaline protease from a moderately

halo-alkali thermotolerant Bacillus Subtilis Strain SH1. Aus. J. Basic Appl. Sci.,

4(10): 5126-5134.

Ningthoujam, D. S., P. Kshetri, S. Sanasam and S. Nimaichand, 2009. Screening,

identification of best producers and optimization of extracellular proteases from

moderately halophilic alkali thermotolerant indigenous actinomycetes. World J.

App. Sci ., 7: 907-916.

Odejimi, R. A. O and O. Oghalu, 2006. Physiological impact of crude oil polluted soil on

growth carbohydrate and protein level of edible shoots of fluted pumpkin (Telferia

occidentalis). Proceedings of the 15th

annual botanical society of Nigeria conference,

University of Uyo, 4-8 March, 2006, 102-105.

Okoh, I., 2006. Biodegradation alternative in the cleanup of petroleum hydrocarbon

pollutants. Biotechnol. Mol. Biol. Rev., 1: 38-50.

xvi

Oleurnfemi, D. I., G. E. Okoloko, A. A. Bakare and A. Akinboro, 2010. Cytotoxic and

genotoxic of effects of cassava effluents using the Allium cepa assay. Res. J. Mutag

., 1:1-6.

Oliveira, A. N., L. A. Oliveira and J. S. Andrade, 2010. Production and some properties of

crude alkaline proteases of indigenous central Amazonian Rhizobia strains. Braz.

Arch. Biol. Technol., 5: 1185-1195.

Oloke, J. K., and B. R. Glick, 2005. Production of bioemulsifier by an unusual isolate of

salmon/red melanin containing Rhodotorula glutinis. Afr. J. Biotechnol. 4(2): 164-

171.

Olson, J. B., C.C. Lord, P. J. McCarthy, 2000. Improved recoverability of microbial colonies

from marine sponge samples. Microb. Ecol., 40: 139-147.

Oskouie, S. F. G., F. Tabandeh, B. Yakhchali, F. Eftekhar, 2008. Response surface

optimization of medium composition for alkaline protease production by Bacillus

clausii. Biochem Eng J., 39: 37-42.

Oyedeji, A. O. Adebiyi, M. A. Omotoyinbo, C. O. Ogunkunle, 2012. Effect of crude oil-

contaminated soil on germination and growth performance of Abelmoschus

esculentus L. Moench. A widely cultivated vegetable crop in Nigeria. Americ. J.

Plant Sci., 3: 1451-1454.

Padmapriya, M and B. C. Williams, 2012. Purification and characterization of neutral

protease enzyme From Bacillus Subtilis. J. Microbiol. Biotech. Res., 2(4): 612-618.

Palanivel, M., P. Rajaguru, K. Kalaiselvi, N. S. Rajaram and G. Ramanathan, 2004. Impact

of dye industry effluent on seed germination and early seedling growth of Sorghum

bicolor and Zea mays. Ad. Plant Sci., 17: 717-723.

Pandey, A. 2003. Solid-state fermentation. Biochem. Eng. J. 13(2): 81- 84.

Paranthaman, R., K. Alagusundaram and J. Indhumathi, 2009. Production of protease from

rice mill wastes by Aspergillus niger in solid state fermentation. World J. Agric.

Sci., 5 (3): 308-312.

Parawira, W., M. Murto, R. Zvauya, B. Mattiasson, 2004. Anaerobic digestion of solid

potato waste alone and in combination with sugar beet leaves. Renew. Energy., 29:

1811-1823.

Parihar, D. K., 2012. Production of lipase utilizing linseed oilcake as fermentation substrate.

Int. J. Sci. Environ. Technol., 3: 135-143.

Park, D. S., H. W. Oh, S.Y. Heo, W. J. Jeong, D. H. Shin, K. S. Bae, and H. Y. Park, 2007.

Characterization of an Extracellular Lipase in Burkholderia sp. HY-10 isolated from

a Longicorn Beetle. J. Microbiol., 409-417.

xvii

Parthasarathi, S., S. Sathya, G. Bupesh, R. Durai Samy, M. Ram Mohan, G. S. Kumar, M.

Manikandan, C.J. Kim and K. Balakrishnan, 2012. Isolation and characterization of

antimicrobial compound from marine Streptomyces hygroscopicus BDUS 49.World

J. Fish Marine Sci., 4 (3): 268-277.

Patil J. H., M. L. A. Raj, S. Bhargav and S. R. Sowmya, 2011. Anaerobic co-digestion of

water hyacinth with primary sludge. Res. J. Chem. Sci., 1(3): 72-77.

Patre, P. K and A.Y. Dawande, 2010. Production and partial purification of protease from

Aspergillus niger and Pseudomonas aeruginosa. As. J. Biotecnol. Res. 03: 278-281.

Pattanapipitpaisal, P., N. Lrown and L. E. Macaskie, 2001. Chromate reduction and 16S

rRNA identification of bacteria isolated from Cr (VI)-contaminated site. Appl.

Microbiol. Biotechnol. 57: 257–261.

Peela, P., V. V. S. N. B. Kurada and R. Terli, 2005. Studies on antagonistic marine

actinomycetes from the Bay of Bengal. World J. Microbiol. Biotechnol., 21: 583–

585.

Phutela, U. G., N. Sahni and S. S. Sooch, 2011. Fungal degradation of paddy straw for

enhancing biogas production. Indian J. Sci. Technol., 4(6): 660-665.

Piyush, M and V. S. Rathore, 2001. A correlation study on some physio chemical quality

quality parameters of pulp and paper mill effluents. Poll Res. 20(3): 465-470.

Pogaku, P., A. Suresh, P. Srinivas and S. Ram Reddy, 2010. Optimization of lipase

production by Staphylococcus sp. Lp12. Afr. J. Biotechnol., 9(6): 882-886.

Potivichayanon, S., T. Sungmon, W. Chaikongmao and S. Kamvanin, 2011. Enhancement

of Biogas Production from Bakery Waste by Pseudomonas aeruginosa. World

Acad. Sci. Engg. Technol.,80: 529-532.

Prakasham, R. S., C. H. Subba Rao, and P. N. Sharma, 2006. Green gram husk-an in

expensive substrate for alkaline protease production by Bacillus sp. in solid state

fermentation. Biores. Technol., 97: 1449-1454.

Prasad, M. P and K. Manjunath, 2011. Comparative study on biodegradation of lipid rich

waste water using lipase producing bacterial species. Ind. J. Biotechnol., 10: 121-

124.

Prathamesh, M., and B. A. Valasange, 2012. Concomitant production of protease and lipase

by Bacillus species isolated from compost soil. Indian Streams Res. J., 1: 1-4.

Prema, P and V. Vishwajith, 2008. Production and optimization of alkaline protease from

Bacillus Sp. College Sadhana, Bloomers of research, vol 1.

xviii

Rahman, K. S. M., J. T. Rahman, P. Lakshmanaperumalsamy, I. M. Banat, 2002. Towards

efficient crude oil degradation by a mixed bacterial consortium. Biores. Technol.,

85 : 257-261.

Rahman, R. N. Z. R. A., A. B. Salleh and M. Basri, 2006. Lipases: Introduction. Nova

Science Publishers, New York. 1-22.

Rahman, R. N. Z. A.; Lee, P. G.; Basri, M. and Salleh, A. B. (2005). Physical factors

affecting the production of organic solvent-tolerant protease by Pseudomonas

aeruginosa strain K. Biores. Technol, 96: 429-436.

Rajan, A and J. Nair, 2011. A comparative study on alkaline lipase production by a newly

isolated Aspergillus fumigatus MTCC 9657 in submerged and solid-state

fermentation using economically and industrially feasible substrate. Turk. J. Biol.,

35: 569-574.

Rajesh, E.M., R. Arthe, R. Rajendran, C. Balakumar, N. Pradeepa and S. Anitha, 2010.

Investigation of lipase production by Trichoderma reesei and optimization of

production parameters. EJEAFChe., 9 (7): 1177-1189.

Rajmalwar, S and P. S. Dabholkar, 2009. Production of protease by Aspergillus sp. using

solidstate fermentation. Afr. J. Biotechnol., 8 (17): 4197-4198.

Ramachandran, S., S. K. Singh, C. Larroche, C. R. Soccol, A. Pandey, 2007. Oil cakes and

their biotechnological application. A review. Biores. Technol., 98: 2000-2009.

Rao, R. K. S. M. S., T. V. Ranganathan, N. G. Karanth, 2003. Some engineering aspects of

solid-state fermentation. Biochem. Eng. J., 13: 127-135.

Rathakrishnan. P and P. Nagarajan, 2011. Red gram husk: A potent substrate for production

of Protease by Bacillus cereus in solid-state fermentation. Int. J. Chem. Tech. Res.,

3(3): 1526-1533.

Rathi, P., R. K. Saxena and R. Gupta, 2001. A novel alkaline lipase from Burkholderia

cepacia for detergent formulation. Proc. Biochem., 37: 187-192.

Rauf, A., M. Irfan, M. Nadeem, I. Ahmed and H. M. N. Iqbal, 2010. Optimization of growth

conditions for acidic protease production from Rhizopus oligosporus through solid

state fermentation of sunflower meal. Int. J. Agricul. Biol. Sci.,1: 40-43.

Ravikumar, G., D. Gomathi, M. Kalaiselvi and C. Uma, 2012. A protease from the

medicinal mushroom Pleurotus sajor-caju; production, purification and partial

characterization. Asi. Paci. J. Tropic. Biomed., 411-417.

xix

Ravindran, B., A. G. Kumar, P. S. A. Bhavani, G. Sekaran, 2011. Solid-state fermentation

for the production of alkaline protease by Bacillus cereus 1173900 using

proteinaceous tannery solid waste. Curr. Sci.., 100: 726-730.

Reddy, M. N., K. Swathi, B. Nagamani, S. Venkateshwar, L. V. Rao and C. S. Rao, 2009.

Red gram husk as a novel inexpensive substrate for the production of alkaline

protease using Bacillus subtilis svr-07. Asi. J. Microbiol. Biotechnol. Environ.

Sci., 11(2): 269-273.

Rehman, S., H. N. Bhatti, I. A. Bhatti and M. Asgher, 2011. Optimization of process

parameters for enhanced production of lipase by Penicillium notatum using

agricultural wastes. Afr. J. Biotechnol., 10(84): 19580-19589.

Remya, M and R. Vijayakumar, 2008. Isolation and characterization of marine antagonistic

actinomycetes from west coast of India. Med. Biol.,15(1): 13 - 19.

Rifaat, H. M., A. A. EL-Mahalawy, H. A. EL-Menofyand S. A.Donia, 2010. Production,

optimization and partial purification of lipase from Fusarium oxysporum. J. Appl.

Sci. Environ. Sanit., 5 (1): 39-53.

Rifaat, H. M., S. M. Hassanein, O. H. El-Said, 2006. Purification and characterisation of

extracellular neutral protease from Streptomyces microflavus. S. A. Saleh, M. S. M.

Selim. Arab J. Biotech., 1: 51-60.

Robinson, T., 2001. Solid state fermentation: A promising microbial technology for

secondary metabolite production. Appl. Microbiol. Biotechnol., 55: 284-289.

Romano, R., T. Rowena, S.Zhang, A.Teter, Jeffery, and McGarvey, 2009. The effect of

enzyme addition on anaerobic digestion of jose tall wheat grass. Biores. Technol.,

100: 4564–4571.

Sabiiti, E. N., 2011. Utilising agricultural waste to enhance food security and conserve the

environment. Afr. J. Food Agric. Nutri. Develop., 11(6) :1-9.

Sabiiti, E. N., F. Bareeba, E. Sporndly, J. S. Tenywa, S. Ledin, E. Ottabong,

S. Kyamanywa, B.Ekbom, J. Mugisha and L. Drake, 2004. Urban market garbage:

A hidden resource f or sustainable urban/peri-urban agriculture and the environment

in Uganda. Uganda J., 50: 102 - 109.

Sadati, R., A. Barghi and R. A. Larki, 2013. Isolation and identification of novel lipase-

producing microbacterium spp. from coastal soils of the Caspian Sea (North of Iran).

World Appl. Sci. J. 23 (1): 65-69.

Saeki, K., K. Ozaki, K, T. Kobayashi,S. Ito, 2007. Detergent alkaline proteases: enzymatic

properties, genes, and crystal structures. J. Biosci. Bioeng. 103: 501- 508.

xx

Safey, E. M and U. M. Abdul-Raouf, 2004. Production, purification and characterization of

protease enzyme from Bacillus subtilis. Int. Conferences for Development and the

environment in the arab world, Assiut. Univ., 1-14.

Sahib, R. A. J. A., 2009. Study of optimum condition for alkaline protease production from

local isolate of Aspergillus niger. Iran. J. Sci., 50(4): 476 - 481

Saitou, N and M. Nei, 1987. The neighbor-joining method: A new method for reconstructing

phylogenetic trees. Mol. Biol. Evolution., 4: 406-425.

Salihu, A and M. Z. Alam, 2012. Production and applications of microbial lipases: A

review. Sci. Res. and Ess., 7(30): 2667 -2677.

Sandhya, C., A. Sumantha, G. Szakacs, and A. Pandey, 2005. Comparative evaluation of

neutral protease production by Aspergillus oryzae in submerged and solid-state

fermentation. Proc. Biochem., 40 : 2689–2694.

Saraswathy., Ramalingam, Sujana, J. Christina and Rajesekharan, 2008. Partial purification,

characterization, and laundry applications of protease from Bacillus sp. KCT1. Asi.

J. Microbiol. Biotech. Env. Sci., 10(2): 449-452.

Saratale, G. D., S. D. Chen, Y. C. Lo, R. G. Saratale and J. S. Chang, 2008. Outlook of

biohydrogen production from lignocellulosic feedstock using dark fermentation-a

review. J. Sci. Ind. Res., 67: 962-979.

Sarkar, S.B., Sreekanth, S. Kant, R. Banerjee and B.C. Bhattacharya, 1998. Production and

optimization of microbial lipase. Bioproc. Eng., 19: 29-32.

Sathishkumar, M., A. R. Binupriya, B. Sang-Ho, Y. Sei-Eok, 2008. Biodegradation of crude

oil by individual bacterial strains and a mixed bacterial consortium isolated from

hydrocarbon contaminated areas. Clean., 36(1): 92-96.

Satpute, S.K., B.D Bhawsar, P. K. Dhakephalkar, B. A. Chopade, 2008. Assessment of

different screening methods for selecting biosurfactant producing marine bacteria.

Indian J. Marine Sci. 37: 243-250.

Satyanarayanan, S., P. Murkutea, Ramakant, 2008. Biogas production enhancement by

Brassica compestries amendment in cattle dung digesters. Biom. Bioener.,

32 : 210-215.

Sekhon, A., N. Dahiya , R. P. Tewari and G. S. Hoondal, 2006. Production of extracellular

lipase by Bacillus megaterium AKG-1 in submerged fermentation. Indian J.

Biotechnol. 5: 179-183.

xxi

Selvakumar, R., R.Sathiskumar and K.Swaminathan, 2008. Purification and wash

performance analysis of thermostable extracellular alkaline protease produced by soil

bacterium Bacillus sp.GOS. Asi. J. Microbiol. Biotech. Env. Sci., 10(1): 29-35.

Selvam, K., B. Vishnupriya and V. Subhash Chandra Bose, 2011. Screening and

quantification of marine actinomycetes producing industrial enzymes amylase,

cellulase and lipase from south coast of India. Int. J. Pharm. Biologic. Archiv.,

2(5) : 1481-1487.

Senthilkumar, R and G. Selvakumar, 2008. Isolation and characterization of an extracellular

lipase producing Bacillus sp. SS-1 from slaughter house soil. Adv. Biotech.,.24-25.

Serdar, L., Arzu, Ahmet, Şen, 2011. Isolation, production, and characterization of an

extracellular lipase from Trichoderma harzianum isolated from soil. Turk. J. Biol.,

35: 543-550.

Sevinc, N and E. Demirkan, 2011. Production of protease by Bacillus sp. N-40 Isolated from

soil and its enzymatic properties. J. Biol. Environ. Sci., 5(14): 95-103.

Seytorini, E., S. Takenaka, S. Murakami and K. Aoki, 2006. Purification and

characterization of two novel halotolerant extracellular proteases from Bacillus

subtilis strain FP-133. Biosci. Biotechnol. Biochem., 70(2): 433-440.

Shafei, H. A., M. S. Abdel-Aziz, M. F. Ghaly and A. A. H. Abdalla, 2010. Optimizing some

factors affecting alkaline protease production by a marine bacterium Streptomyces

albidoflavus. Proceeding of fifth scientific environmental conference, Zagazig Uni.,

125 -142.

Shanthakumari, A. R., S. Ramesh, 2009. Production and optimization of thermostable

alkaline protease by Vibrio alginolyticus. Rec. Res. Sci. Tech., 255-258.

Sharma, R., Y. Chisti, U. C. Banerjee, 2001. Production, purification, characterization, and

applications of lipases. Biotechnol Adv., 19(8): 627-62. Sharma, A., D. Bardhan and R. Patel, 2009. Optimization of physical parameters for lipase

production from Arthrobacter sp. BGCC 490. Indian J. Biochem. Biophy., 46:

178-83.

*Sharma, D. K., 2002. Studies on availability and utilization of onion storage waste in a

rural habitat. Ph.D. thesis, Centre for Rural Development and Technology, Indian

Institute of Technology, Delhi, India.

Sharma. A., Dipa Bardhan, Rashmi patel, 2009. Optimization of physical parameters for

lipase production from Arthrobacter sp.BGCC 490. Indian J. Biochem. Biophy.,

46: 178-183.

xxii

Shimada, Y., T. Nagao, Y. Watanabe, 2005. Application of lipase to industrial scale

purification of oil- and fat- related compounds. In: Hou CT (Ed). Handbook of

Industrial biocatalysis, Taylor and Francis, Boca Raton, FL. 8: 1-27.

Shirling, E. B., and D. Gottlieb, 1966. Methods for characterization of Streptomyces species.

Int J. Syst. Bacteriol., 16: 313–340.

Shivakumar, S., 2012. Co-production of alkaline protease and amylase of Bacillus sp Y in

solid state cultivations. Res. J. Biotech., 32: 32-37.

Shu, C. H., C. J. Xu, G. C. Lin, 2006. Purification and partial characterization of a lipase

from Antrodia cinnamomea. Proc. Biochem., 41: 734-738.

Shukla, A., A. Rana, L. Kumar, B. Singh and D. Ghosh, 2009. Assesssment of detergent

activity of streptococcus sp. ASO2 protease isolated from soil of Sahastradhara,

Doon valley, Uttarkand, India. Asi. J. Microbiol. Biotech. Env. Sci., 11(3):

587-591.

Silambarasan, T., M. Vikramathithan, R. Dhandapani, D. J. Mukeshkumar and P. T.

Kalaichelvan, 2012. Biological treatment of dairy effluent by microalgae. World J.

Sci. Technol., 2(7): 132-134.

Silva, R. M. P., A. A. Rodriguez, J. M. G. M. Oca and Moreno, 2006. Biodegradation of

crude oil by Pseudomonas aeruginosa AT18 strain. Tecnología Química., 1: 70-77.

Singh, M., K. Saurav, N. Srivastava and K. Kannabiran, 2010. Lipase production by

Bacillus Subtilis OCR-4 in solid state fermentation using ground nut oil cakes as

substrate. Res. J. Biol. Sci. 2(4): 241-245.

Singhal, P., V. K. Nigam and A. S. Vidyarthi, 2012. Studies on production, characterization

and applications of microbial alkaline proteases. Int. J. Adv. Biotechnol. Res., 3(3):

653-669.

Sirisha, E., N. Rajasekar and M. L. Narasu, 2010. Isolation and optimization of lipase

producing bacteria from oil contaminated soils. Adv. Biol. Res., 4(5): 249-252.

*Sivakumar, K,. 2001. Actinomycetes of an Indian mangrove (Pitchavaram) environment;

an inventory. Ph.D. Thesis, Annamalai University, Tamil Nadu.

Sivakumar, K., M. K. Sahu and K. Kathiresan, 2005. Isolation and characteristics of

Streptomyces, producing antibiotic from mangrove environment. Asi. J. Microbiol.

Biotechnol. Environ. Sci., 7: 457-464.

xxiii

Sivaprakasam, S., S. Mahadevan, S. Sekar and S. Rajakumar, 2008. Biological treatment of

tannery wastewater by using salt-tolerant bacterial strains. Microbial Cell Fact.,

7:15 :1-7

Sonakya, V., N. Raizada, V. Kalia, 2001. Microbial and enzymatic improvement of

anaerobic digestion of waste biomass. Biotechnol Lett., 23 : 1463–1466.

Sridevi, D. V and R. A. Ramanujam, 2012. Biogas generation in a vegetable waste

anaerobic digester: An analytical approach. Res. J. Recent Sci., 1(3): 41-47.

*Stach, J. E. M., L. A. Maldonado, A. C. Ward, M. Goodfellow and A. T. Bull, 2003. New

primers for the class Actinobacteria: application to marine and terrestrial

environments. Environ. Microbiol., 5 : 828-841.

Subramani, T. and D. Haribalaji, 2012. Biodegradation of tannery effluent and designing the

reactor for clarifier and activated sludge process. Int. J. Modern Engg. Res., 2(3):

774-781.

Subramaniyam, R and R. Vimala, 2012. Solid state and submerged fermentation for the

production of bioactive substances: A comparative study. Int. J. Sci. Nature., 3(3):

480-486. Sugumaran, K. R., V. Ponnusami, D. Gowdhaman, 2012. Thermo stable alkaline protease

production from Bacillus thuringiensis MTCC 1953: Optimization and kinetic

studies. Int. J. Chem. Tech. Res., 4 (1): 198-202.

Sumantha, A., C. Sandhya, G. Szakacs, C. R. Soccol and A. Pandey, 2005. Production

and partial purification of a neutral metallo protease by fungal mixed substrate

fermentation. Food Technol. Biotechnol., 43: 313–319.

Sumantha, A., P. Deepa, C. Sandhya, G. Szakacs, C. R. Soccoland A. Pandey, 2006. Rice

Bran as a substrate for proteolytic enzyme production. Brazil. Archiv. Biol.

Technol., 49(5): 843-851.

Suntornsuk, W., J. Tongjun, P. Onnim, H. Oyama, K. Ratanakanokchai, T. Kusamran, K.

Oda, 2004. Purification and characterisation of keratinase from a thermotolerant

feather-degrading bacterium. Disponível em: http://www.thaiscience.info/Article.

Surinenaite, B., V. Bendikiene and B. Juoduka, 2002. Characterisation and physicochemical

properties of a lipase from Pseudomonas mendonica 3121-1. Biotechnol. Appl.

Biochem., 36: 47-55.

*Suzuki, M., 2001. Alkaline lipase and detergent composition active at low temperature.

United States Patent 6306813. http://www.freepatent online.com.

xxiv

Taddei, A., M. J. Rodriguez, E. M. Vilchez, 2006. Isolation and identification of

Streptomyces spp. from Venezuelan soils: Morphological and biochemical studies.

Microbiol. Res., 161: 222-231.

Tamura, K., J. Dudley, M. Nei and S. Kumar, 2007. MEGA4: Molecular evolutionary

genetics analysis (MEGA) software version 4.0. Mol Biol. Evol., 24(8):1596-1599.

Tamura, K., M. Nei, and S. Kumar, 2004. Prospects for inferring very large phylogenies by

using the neighbor-joining method. PNAS., 101: 11030-11035.

Thanikaivelan, P., J. R. Rao, B.U. Nair and T. Ramasami, 2004. Progress and recent trends

in biotechnological methods for leather processing. Trends Biotechnol., 22:

181-188.

Thomas, A., M. Mathew, A. K. Valsa, S. Mohan and R. Manjula, 2003. Optimization of

growth condition for the production of extracellular lipase by Bacillus mycoides.

Ind. J. Microbiol 4391: 63-67.

Thumar, J. T and S. P. Singh, 2007. Secretion of an alkaline protease from a salt-tolerant

and alkaliphilic, Streptomyces clavuligerus strain MIT-1. Braz. J. Microbiol., 38:

766-772.

Trivedi, R. K and P. K. Goel, 1986. Methods for water pollution studies 209. Enviromedia

publications, Karad, Chemical and Biologica.

Tuesorn, S., S. Wongwilaiwalin, V. Champreda, M. Leethochawalit , A. Nopharatana, S.

Techkarnjanaruk, P. Chaiprasert, 2013. Enhancement of biogas production from

swine manure by a lignocellulolytic microbial consortium. Biores. Technol.,

144 : 579-586.

Tumuhairwe, J. B., J. S. Tenywa, E. Otabbong and S. Ledin, 2009. Comparison of four low

-technology composting methods for market crop wastes. Was. Manag., 29 : 2274-

2281.

Turner, R. C. and C. Marshal, 1972. Accumulation of Zink by subcellular fraction of some

root Agrotics teneys in relation to zink tolerance. New Phyton,. 71: 671-676.

Ulker, S., A. Ozel, A. Colak, S. A. Karaoglu, 2011. Isolation, production, and

characterization of an extracellular lipase from Trichoderma harzianum isolated

from soil. Turk. J. Biol., 35: 543-550.

Vakhlu, J., A. Kour, 2006. Yeast lipases: enzyme purification, biochemical properties and

gene cloning. Elect. J. Biotechnol,. 9: 69-85.

xxv

Valli, S., S. S. Suvathi, O. S. Aysha, P. Nirmala, K. P. Vinoth, A. Reena, 2012.

Antimicrobial potential of actinomycetes species isolated from marine environment.

Asi. Pac. J. Tropic. Biomed., 2(6): 469-73.

Vani, N and R. Suganthi, 2008. Isolation and characterization of an extracellular protease by

Bacillus subtilis from poultry soil. Asi. J. Microbiol. Biotechnol. Environ. Sci. P.,

10(4): 753-758.

Veerapagu, M., A. S. Narayanan, K. Ponmurugan, K. R. Jeya, 2013. Screening selection

identification production and optimization of bacterial lipase from oil spilled soil.

Asian. J. Pharm. Clin Res., 6 (3): 62-67.

Verma, A., H. S. Pal, R. Singh, S. Agarwal, 2011. Potential of alkaline protease isolated

from Thermoactinomyces sp. RM4 as an alternative to conventional chemicals in

leather industry dehairing process. Int. J. Agric. Environ. Biotechnol., 2 (4):

173-178.

Vida, M., S. Akbar and G. Zahra, 2007. Biodegradation of effluents from dairy plant by

bacterial isolates. Iran. J. Chem. Chem. Eng., 26 (1): 55-59.

Vijayakumar, R., C. Muthukumar, N. Thajuddin, A. Panneerselvam, R. Saravanamuthu,

2007. Studies on the diversity of actinomycetes in the Palk Strait region of Bay of

Bengal, India. Actinomycetologica., 21: 59-65.

Vijayakumar, R., V. Seethalakshmi, S. Anitha and R. Saravanamuthu, 2009. Isolation and

characterization of antagonistic actinomycetes from Coimbatore soils, Tamil Nadu,

India. J. Sci. Environ. Technol., 2: 191-201.

Vijayaraghavan, P. J. Lavanya and S. G. P. Vincent, 2012. Biosynthesis and characterization

of keratinolytic protease from Actinobacterium sp. in solid state culture . Int. J.

Appl. Biol. Pharm. Technol. 3(2): 149-158.

Vishnupriya, B., C. Sundaramoorthi, M. Kalaivani, K. Selvam, 2010. Production of lipase

from Streptomyce sgriseus and evaluation of Bioparameters. Int. J. Chem. Tech.

Res., 2(3): 1380-1383.

Vivekanandan, S., and G. Kamaraj, 2011a. Investigation on cow dung as co-substrate with

pretreated sodium hydroxide on rice chaff for efficient biogas production. Int. J. Sci.

Adv. Technol., 1 (4): 76-80.

Vivekanandan, S., and G. Kamaraj, 2011b. Effect of co-digestion of cow dung with rice

chaff, rice straw and rice husk in biogas production using anaerobic digestion. Int.

Res. J. Biotechnol., 2(5): 114-118.

xxvi

Vonothini, G., M. Murugan, K. Sivakumar and S. Sudha, 2008. Optimization of protease

production by an actinomycete strain, PS-18A isolated from an estuarine shrimp

pond. Afr. J. Biotechnol., 7 (18): 3225-3230.

Vujaklija, D., M. Abrami, I. Le, T. Mar and J. Pigac, 2003. Streptomyces rimosus GDS(L)

Lipase: production, heterologous overexpression and structure-stability relationship.

Food Technol. Biotechnol. 41 (1): 89–93.

Wathore, T. S., and M. B. Patil, 2008. Production of thermostable alkaline proteinase by

Aspergillus fumigatus. Asi. J. Microbiol. Biotech. Env. Sci., 10: 779-787.

*Watnabe, N., Y. Ota, Y. Minoda, K. Yamada, 1977. Isolation and identification of alkaline

lipase producing micororganisms, cultural conditions and some properties of crude

enzymes. J. Agric. Biol. Chem,. 41: 1353-1358.

Webster, N. S., K. J. Wilson, L. L. Blackall, R. T. Hill, 2001. Phylogenetic diversity of

bacteria associated with the marine sponge Rhopaloeides odorabile. Appl. Environ.

Microbiol., 67 : 434-444.

Weiland, P, 2003. Production and energetic use of biogas from energy crops and wastes in

Germany. Appl. Biochem. Biotechnol., 109: 263-274.

Weiss, S., M. Tauber, W. Somitsch, R.Meincke, H. Müller, G. Berg, G. M. Guebitz, 2010.

Enhancement of biogas production by addition of hemicellulolytic bacteria

immobilised on activated zeolite. Water Res., 44 (6): 1970-1980.

*Williams, S. T., M. Goodfellow, and G. Alderson, 1989. Genus Streptomyces Waksman

and Henrici 1943, 339AL

. In Bergey's Manual of Systematic Bacteriology, vol. 4, 2452 - 2492. Edited by S. T. Williams, M. E. Sharpe & J. G. Holt. Baltimore:

Williams & Wilkins.

Yadvika, Santosh, T. R. Sreekrishnan, S. Kohli, V. Rana, 2004. Enhancement of biogas

production from solid substrates using different techniques a review. Biores.

Technol., 95: 1-10.

Yang, J. K., I. L. Shih, Y. M. Tzeng, and S. L. Wang, 2000. Production and purification of

protease from Bacillus subtilis that can deproteinize crustacean wastes. Enzyme

Microb. Technol., 26: 406-413.

Yang, S. and J. Wang, 1999. Protease and amylase production of Streptomyces rimosus in

submerged and solid state cultivation. Bot. Bull. Acad. Sin. 40: 259–265.

Yazdani S. S., and R. Gonzalez, 2007. Anaerobic fermentation of glycerol: a path to

economic viability for the biofuels industry. Curr. Opin. Biotechnol., 18: 213-219.

xxvii

Zambare, V. P., S. S. Nilegaonkar and P. P. Kanekar, 2007. Production of an alkaline

protease by Bacillus Cereus MCM B-326 and its application as a dehairing agent.

World J. Microbiol. Biotechnol., 23: 1569–1574.

Zhang, G., Y. Wu, X. Qian and Q. Meng, 2005. Biodegradation of crude oil by

Pseudomonas aeruginosa in the presence of rhamnolipids. J. Zhejiang. Univ. Sci.

B, 6(8): 725–730.

Zhong, W., Z. Zhang, L. Yijing, S. Shanshan, Q. Wei, X. Meng, 2011. Effect of biological

pretreatments in enhancing corn straw biogas production. Biores. Technol., 102

(24): 11177-11182.

*Originals were not seen.