50
Bibliography BIBLIOGRAPHY Aasen, I. M., Markussen, S., Moretro, T., Katla, T., Axelsson, L., Naterstad, K., (2003), ―Interactions of the bacteriocins sakacin P and nisin with food constitutents‖, Int J Food Microbiol, 87, 35-43. Aasen, I.M., Moretro, T., Katla, T., Axelsson, L., Storro, I., (2000), Influence of complex nutrients, temperature and pH on bacteriocin production by Lactobacillus sakei CCUG 42687‖, Appl Microbiol Biotech, 53, 159166. Abee, T., Klaenhammer, T.R., Letellier, L., (1994 b), ―Kinetic studies of the action of lactacin F, a bacteriocin produced by Lactobacillus johnsonii that forms poration complexes in the cytoplasmic membrane‖, Appl Env Microbiol, 60, 10061013. Adamberg, K., Kask, S, Laht, T.M., Paalme, T., (2003), ―The effect of temperature and pH on the growth of lactic acid bacteria: a pH- auxostat study‖, Int J Food Microbiol, 185, 171-83. Aharon, O., (2008), Microbial life at high salt concentrations: phylogenetic and metabolic diversity‖, Saline Systems, 4, 2-13. Ahmad, V., Muhammad, Z. I. A.N., Haseeb, M., Khan, M.S., (2014), ―Antimicrobial potential of bacteriocin producing Lysinibacillus jx416856 against foodborne bacterial and fungal pathogens, isolated from fruits and vegetable waste‖, Anaerobe, 27, 87-95. Ahmadova, A., Todorov, S.D., Hadji-Sfaxi, I., Choiset, Y., Rabesona, H., Messaoudi, S., Kuliyev, A., Franco, B.D., Chobert, J.M., Haertle, T., (2013), ―Antimicrobial and antifungal activities of Lactobacillus curvatus strain isolated from homemade Azerbaijani cheese‖, Anaerobe, 20, 4249. Ahmed, I., Yokota, A., Yamazoe, A., Fujiwara, T., (2007), ―Proposal of Lysinibacillus boronitolerans gen. nov. sp. nov., and transfer of

Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

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Page 1: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

BIBLIOGRAPHY

Aasen, I. M., Markussen, S., Moretro, T., Katla, T., Axelsson, L.,

Naterstad, K., (2003), ―Interactions of the bacteriocins sakacin P

and nisin with food constitutents‖, Int J Food Microbiol, 87, 35-43.

Aasen, I.M., Moretro, T., Katla, T., Axelsson, L., Storro,

I., (2000), ―Influence of complex nutrients, temperature and pH on

bacteriocin production by Lactobacillus sakei CCUG 42687‖, Appl

Microbiol Biotech, 53, 159–166.

Abee, T., Klaenhammer, T.R., Letellier, L., (1994 b), ―Kinetic studies

of the action of lactacin F, a bacteriocin produced by Lactobacillus

johnsonii that forms poration complexes in the cytoplasmic

membrane‖, Appl Env Microbiol, 60, 1006–1013.

Adamberg, K., Kask, S, Laht, T.M., Paalme, T., (2003), ―The effect of

temperature and pH on the growth of lactic acid bacteria: a pH-

auxostat study‖, Int J Food Microbiol, 185, 171-83.

Aharon, O., (2008), ―Microbial life at high salt concentrations:

phylogenetic and metabolic diversity‖, Saline Systems, 4, 2-13.

Ahmad, V., Muhammad, Z. I. A.N., Haseeb, M., Khan, M.S., (2014),

―Antimicrobial potential of bacteriocin producing Lysinibacillus

jx416856 against foodborne bacterial and fungal pathogens,

isolated from fruits and vegetable waste‖, Anaerobe, 27, 87-95.

Ahmadova, A., Todorov, S.D., Hadji-Sfaxi, I., Choiset, Y., Rabesona,

H., Messaoudi, S., Kuliyev, A., Franco, B.D., Chobert, J.M., Haertle,

T., (2013), ―Antimicrobial and antifungal activities of Lactobacillus

curvatus strain isolated from homemade Azerbaijani cheese‖,

Anaerobe, 20, 42–49.

Ahmed, I., Yokota, A., Yamazoe, A., Fujiwara, T., (2007), ―Proposal

of Lysinibacillus boronitolerans gen. nov. sp. nov., and transfer of

Page 2: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Bacillus fusiformis to Lysinibacillus fusiformis comb. nov. and

Bacillus sphaericus to Lysinibacillus sphaericus comb. nov.‖, Int J

Syst Evol Mic, 57, 1117–1125.

Akcelik, M., (1999), ―The conjugal plasmid pLL10236 encodes

lactose fermentation ability, restriction/modification activity,

bacteriocin production and immunity in Lactococcus lactis subsp.

lactis LL102‖, Food Microbiol, 16, 487-494

Al-Holy, M., Ruiter, J., Lin, M., Kang, D.H., Rasco, B., (2004),

―Inactivation of Listeria innocua in nisin-treated salmon

(Oncorhynchus keta) and sturgeon (Acipenser transmontanus)

caviar heated by radio frequency‖, J Food Prot, 67, 1848-1854.

Amann, R.I., Ludwig, W., Schleifer, K. H., (1995), ―Phylogenetic

identification and in situ detection of individual microbial cells

without cultivation‖, Microbial Rev, 59,143–169.

Ann, F., Barbara, G., Lund, M., (1983), ―The effect of alkaline pH on

growth and metabolic products of a motile, yellow-pigmented

streptococcus sp‖, J Gen Microbiol, 129, 2429-2435.

Aslam, M., Shahid, M., Rehman, F. U., Naveed, N. H., Batool, A. I.,

Sharif S., Asia A., (2011), ―Purification and characterization of

bacteriocin isolated from Streptococcus thermophilus‖, Af J

Microbiol Res, 5, 2642-2648.

Aslim, B., Yuksekdag, Z.N., Sarikaya, E., Beyatli, Y., (2004),

―Determination of the bacteriocin like substances produced by

some lactic acid bacteria isolated from Turkish dairy products‖,

LWT, Food Sci Tech, 38, 691-694.

Aunpad, R., Na-Bangchang, K., (2007), ―Pumilicin 4, a novel

bacteriocin with anti-MRSA and anti-VRE activity produced by

Page 3: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

newly isolated bacteria Bacillus pumilus strain WAPB4‖, Curr

Microbiol, 55, 308-13.

Balasubramanyam, B.V., Varadaraj, M.C., (1998), ―Cultural

conditions for the production of bacteriocin by a native isolate of

Lactobacillus delbrueckii sp. bulgaricus CFR 2028 in milk medium‖,

J Appl Bacteriol, 84, 97-102.

Barbosa, A.A., Silva de Araújo, H.G., Matos, P.N., Carnelossi, M.A.,

Almeida de Castro, A., (2013), ―Effects of nisin-incorporated films

on the microbiological and physicochemical quality of minimally

processed mangoes‖, Int J Food Microbiol, 164, 135-40.

Barboza-Corona, J.E., de la Fuente-Salcido, N., Alva-Murillo, N,

Ochoa-Zarzosa, A., Lopez-Meza, J.E., (2009), ―Activity of

bacteriocins synthesized by Bacillus thuringiensis against

Staphylococcus aureus isolates associated to bovine mastitis‖,

Veterinary Microbiol, 138,179–183.

Barefoot, S. F., Klaenhammer, T. R., (1983), ―Detection and activity

of lactacin B, a bacteriocin produced by Lactobacillus acidophilus”,

Appl Environ Microbiol, 45, 1808–1815.

Barefoot, S. F., Klaenhammer, T. R., (1984), ―Purification and

characterization of the Lactobacillus acidophilus bacteriocins,

lactacin B‖, Antimicrob Agents Ch, 26, 328–334.

Basurto-Cadena, M. G. L., azquez-Arista, M. V., Garc´ıa-Jim´enez, J.,

Salcedo-Hern´andez, R Bideshi, D. K., Barboza-Corona, J. E., (2012),

―Isolation of a new Mexican strain of Bacillus subtilis with

antifungal and antibacterial activities‖, The Sci World J , 2012, 1-7.

Baur, A., Kirby, W., Sherris, J., Turch, M., (1996), ―Antibiotic

susceptibility testing by standardized single disc method‖, Am J

Clin Pathol, 45, 493–496.

Page 4: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Becker, S.C., Foster-Frey, J., Donovan, D.M., (2008), ―Phage K lytic

enzyme LysK and lysostaphin act synergistically to kill MRSA‖,

FEMS Microbiol Lett, 287, 185–191.

Bhattacharya, S., Das, A., (2010), ―Study of physical and cultural

parameters on the bacteriocins produced by lactic acid bacteria

isolated from traditional Indian fermented foods‖, American J

Food Technol, 5, 111-120.

Bhunia, A. K., Kim, W. J., Johnson, M. S., Ray, B., (1988),

―Purification, characterization and antimicrobial spectrum of a

bacteriocin produced by Pediococcus acidilactici‖, J Appl Bacteriol,

65, 261–268.

Bhunia, A.K., Johnson, M.C., Ray, B., Kalchayanand, N., (1971),

―Mode of action of pediocin AcH from Pediococcus acidilactici H

on sensitive bacterial strains‖, J Appl Microbiol, 70, 25-33.

Bierbaum, G, Sahl, H.G., (2009), ―Lantibiotics: mode of action

biosynthesis and bioengineering‖, Curr Pharm Biotechnol, 10, 2-18.

Biswas, S.R., Ray, P., Johnson, M.C., Ray, B., (1991), ―Influence of

growth conditions on the production of a bacteriocin ACH, by

Pediococcus acidilactici H”, Appl Environ Microbiol, 57, 1265-1267.

Blaser, M., (2011), ―Antibiotic overuse: stop the killing of beneficial

bacteria‖, Nature, 476, 393–394.

Bligh, E.G., Dyer, W. J., (1959), ―A rapid method of total lipid

extraction and purification‖, Can J Biochem Physiol, 37, 911–917.

Boekhorst, J., Wels, M., Kleerebezem, M., Siezen, R. J., (2006), ―The

predicted secretome of Lactobacillus plantarum WCFS1 sheds light

on interactions with its environment‖, Microbiol, 152, 3175–83.

Bogovic-Matijasic, B., Rogeli, I., (1998), ―Bacteriocin complex of

Lactobacillus acidophilus LF221—production studies in MRS-

Page 5: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

media at different pH-values and effect against Lactobacillus

heleticus ATCC 15009‖, Process Biochem, 33, 345–352.

Bonelli, R., Wiedemann, R.I., Sahl, H.G., (2006), ―Lantibiotics. In:

Kastin A (ed) Handbook of biologically active peptides‖, Elsevier,

New York, 379-392.

Bowe, W.P., Filip, J.C., Di Rienzo, J.M., Volgina, A., Margolis, D.J.,

(2006), ―Inhibition of Propionibacterium acnes by bacteriocin like

inhibitory substances (BLIS) produced by Streptococcus

salivarius‖, J Drugs Dermatol, 5, 868–870.

Bracci, L., Falciani, C., Lelli, B., Lozzi, L., Runci, Y., Pini, A., (2003),

―Synthetic peptides in the form of dendrimers, become resistant to

protease activity‖, J Biol Chem, 278, 46590–46595.

Brillet, A., Pilet, M.F., Prevost, H., Cardinal, M., Leroi, F., (2005),

―Effect of inoculation of Carnobacterium divergens V41, a bio-

preservative strain against Listeria monocytogenes risk, on the

microbiological, chemical and sensory quality of cold smoked

salmon‖, Int J Food Microbiol, 104, 309-324.

Bulut, C., (2003), ―Isolation and molecular characterization of lactic

acid bacteria from cheese‖, IYTE Thesis of Ms, 19-20.

Burrowes, B., Harper, D.R., Anderson, J., McConville, M., Enright,

M.C., (2011), ―Bacteriophage therapy potential uses in the control

of antibiotic-resistant pathogens‖, Expert Rev Anti Infect Ther, 9,

775-85.

Bushra, U., Ahmed, Mohammad, N.V., Ahmad, V.U., Edwards, D.,

(2009), ―Screening of marine bacteria of Pakistan coast for drug

discovery Potential‖, Proc Pakistan Acad Sci, 46, 137-144.

Caballero Gómez, N., Abriouel, H., Ennahar, S., Gálvez, A., (2013),

―Comparative proteomic analysis of Listeria monocytogenes

Page 6: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

exposed to enterocin AS-48 in planktonic and sessile states‖, Int J

Food Microbiol, 31, 167, 202-207.

Çakır, İ., (2003), ―Determination of some probiotic properties on

Lactobacilli and Bifidobacteria”, Ph.D. thesis, Ankara University

Ankara.

Callewaert, R., Holo, H., Devreese, B., Beeumen, J. V., Nes, I., Vuyst,

L. D. (1999), ―Characterization and production of amylovorin

L471, a bacteriocin purified from Lactobacillus amylovorous

DCE471 by a novel three-step method‖, Microbiol, 145, 2559-2568.

Calo-Mata, P., Arlindo, S., Boehme, K., Miguel, T., Pascoal, A.,

Barros-Velazquez, J., (2007), ―Current applications and future

trends of lactic acid bacteria and their bacteriocins for the bio-

preservation of aquatic food products‖, Food Bioprocess Technol,

1, 43-63.

Carroll, J., Draper, L.A., O'Connor, P.M., Coffey, A., Hill, C., Ross,

R.P., et al. (2010), ―Comparison of the activities of the lantibiotics

nisin and lacticin 3147 against clinically significant mycobacteria‖,

Int J Antimicrob Agents, 36, 132–136.

Cascales, E., Buchanan, S.K., Duche´ D, Kleanthous, C., Lloube`s, R.,

Postle, K., Riley, M., Slatin, S., Cavard, D., (2007), ―Colicin biology‖,

Microbiol Mol Biol Rev, 71,158–229.

Castellano, P., Belfiore, C., Vignolo, G., (2011), ―Combination of

bioprotective cultures with EDTA to reduce Escherichia coli

O157:H7 in frozen ground-beef patties‖, Food Control, 228, 1461-

1465.

Charteris, W.P., Kelly, P.M., Morelli, L., Collins, J.K., (2001),

―Gradient diffusion antibiotic susceptibility testing of potentially

probiotics Lactobacilli‖, J Food Protect, 64, 2007-2014.

Page 7: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Chatterjee, C., Paul, M., Xie, L., van der Donk, W.A.,(2005),

―Biosynthesis and mode of action of lantibiotics‖, Chem Rev, 105,

633-84.

Chatterjee, S., Chatterjee, D.K., Jani, R.H., Blumbach, J., Ganguli,

B.N., Klesel, N., Limbert, M., Seibert, G., (1992), ―Mersacidin, a new

antibiotic from Bacillus, in vitro and in vivo antibacterial activity‖,

J Antibiot, 45, 839–845.

Cherif, A., Rezgui, W., Raddadi, N., Daffonchio, D., Boudabous, A.,

(2008), ―Characterization and partial purification of entomocin

110, a newly identified bacteriocin from Bacillus thuringiensis

subsp. Entomocidus HD110‖, Microbiol Res, 163, 684-692.

Chikindas, M.L., García-Garcerá, M..J., Driessen, A.J.M., Ledeboer,

A.M., Nissen-Meyer J., Nes I.F., Abee T., Konings, W.N., Venema, G.,

(1993), ―Pediocin PA-1, a bacteriocin from Pediococcus acidilactici

PAC1.0, forms hydrophilic pores in the cytoplasmic membrane of

target cells‖, Appl Env Microbiol, 59, 3577–3584.

Chopra, L., Singh, G., Choudhary, V., Sahoo, DK., (2014),

―Sonorensin: an antimicrobial peptide, belonging to

heterocycloanthracin subfamily of bacteriocins, from a new marine

isolate Bacillus sonorensis MT93‖, Appl Environ Microbiol, 80,

2981-2990.

Christopher, T. L., John C.V., (2012), ―Development of Class IIa

bacteriocins as therapeutic agents‖, Int J Microbiol, 13, 2012,

386410

Chung, H.J., Yousef, A.E., (2010), ―Synergistic effect of high

pressure processing and Lactobacillus casei antimicrobial activity

against pressure resistant Listeria monocytogenes”, New Biotechnol,

27, 403-408.

Page 8: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Cintas, L. M., Casaus, M.P., Herranz, C., Nes, I.F., (2001),

―Hernández, P. E. Review: bacteriocins of lactic acid bacteria‖,

Food Sci Technol Int, 7, 281-305.

Cintas, L.M., Casaus, P., Havarstein, L.S., Hernandez, P.E., Nes, I.F.

(1997), ―Biochemical and genetic characterization of enterocin P, a

novel sec-dependent bacteriocin from Enterococcus faecium P13

with a broad antimicrobial spectrum‖, Appl Environ Microbiol, 63,

4321-4330.

Clara, R., Ana, R., Beatriz, M., (2012), ―Cell wall-active bacteriocins

and their applications beyond antibiotic activity‖, Probiotics and

Antimicro Prot, 4, 259–272.

Clardy, J., Fischbach, M.A., Walsh, C.T., (2006), ―New antibiotics

from bacterial natural products‖, Nat Biotech, 24, 1541–1550.

Cleveland, J., Montville, T.J., Nes., I.F., Chikindas, M.L., (2001),

―Bacteriocins: safe, natural antimicrobials for food preservation‖,

Int J Food Microbiol , 71, 1-20.

Coeuret, V., Dubernet, S., Bernardeau, M., Gueguen, M., Vernoux,

J.P., (2003) ―Isolation, characterization an identification of

Lactobacilli focusing mainly on cheeses and other dairy products‖,

Lait, 83, 269–306.

Collins, J.K., Thornton, G., Sullivan, G.O., (1998), ―Selection of

probiotics strains for human applications‖, Int Dairy J, 8, 487-490.

Collins, M.D., Rodrigues, U., Aguirre, A.M., (1991), ―Phylogenetic

analysis of the genus Lactobacillus and related lactic acid bacteria

as determined by reverse transcriptase sequencing of 16S rRNA‖,

FEMS Microbiol Lett, 77, 5-12.

Page 9: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Coloretti, F., Carri, S., Armaforte, E., Chiavari, C., Grazia, L., et al.

(2007), ―Antifungal activity of Lactobacilli isolated from salami‖,

FEMS Microbiol Lett, 271, 245–250.

Cooper, M. A., Shlaes, D., (2011), ―Fix the antibiotics pipeline‖,

Nature, 472, 32.

Corr, S.C., Li, Y., Riedel, C.U., O’Toole, P.W., Hill, C., Gahan,

C.G.M., (2007), ―Bacteriocin production as a mechanism for the

antiinfective activity of Lactobacillus salivarius UCC118‖, Proc Natl

Acad Sci, 104, 7617–7621.

Cotter, P.D., Hill, C., Ross, R.P., (2005), ―Bacteriocins: developing

innate immunity for food‖, Nat Rev Microbiol, 3, 777–778.

Cotter, P.D., Ross, R.P., Hill, C., (2013), ―Bacteriocin: A viable

alternative to antibiotics‖, Nat Rev Microbiol, 11, 95-105.

Cowan, S.T., Steel, K. J. (1965), ―Manual for the Identification of

Medical Bacteria‖, Cambridge University Press, London, UK, pp.17-

39.

Crispie, F., Flynn, J., Ross, R.P., Hill, C., Meaney, W., (2004),

―Update on the development of a novel dry cow therapy using a

bismuth based intra mammary teat seal in combination with the

bacteriocin lacticin 3147‖, Irish Veterinary J, 57, 652–656.

Crispie, F., Twomey, D., Flynn, J., Hill, C., Ross, P., Meaney, W.,

(2005), ―The lantibiotic lacticin 3147 produced in a milk-based

medium improves the efficacy of a bismuth-based teat seal in cattle

deliberately infected with Staphylococcus aureus‖, J Dairy Res, 72,

159–167.

Cross, M.L., (2002), ―Microbes versus microbes: immune signals

generated by probiotics Lactobacilli and their role in protection

Page 10: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

against microbial pathogens‖, FEMS Immune Med Microbiol, 34,

245-253.

Crost, E.H., Ajandouz, E.H., Villard, C., Geraert, P.A., Puigserver, A.,

Fons, M., (2011), ―Ruminococcin C, a new anti-Clostridium

perfringens bacteriocin produced in the gut by the commensal

bacterium Ruminococcus gnavus E1‖, Biochimie, 93, 1487–1494.

Cursino, L., Smajs, D,S marda, J., Nardi, R.M.D., Nicoli, J.R.,

Chartone- Souza, E., Nascimento, A.M.A., (2006), ―Exoproducts of

the Escherichia coli strain H22 inhibiting some enteric pathogens

both in vitro and in vivo‖, J Appl Microbiol , 100, 821–829.

Daba, H., Lacroix, C., Huang, J., Simard, R., (1993), ―Influence of

growth conditions on production and activity of mesenterocin 5 by

a strain of Leuconostoc mesenteroides‖, Applied

Bacteriology, 39, 166–173.

Dabour, N., Zihler, A, Kheadr, E., Lacroix, C., Fliss, I., (2009), ―In

vivo study on the effectiveness of pediocin PA-1 and Pediococcus

acidilactici UL5 at inhibiting Listeria monocytogenes‖, Int J Food

Microbiol, 133, 225–233.

Dajcs, J.J., Hume, E.B., Moreau, J.M., Caballero, A.R.,Cannon, B.M.,

O’Callaghan., R.J., (2000), ―Lysostaphin treatment of methicillin-

resistant Staphylococcus aureus keratitis in the rabbit‖, Am J

Ophtalmol, 130, 544

De Kwaadsteniet, M., Doeschate, K.T., Dicks, L.M.T., (2009), ―Nisin

F in the treatment of respiratory tract infections caused by

Staphylococcus aureus‖, Lett Appl Microbiol, 48, 65–70.

De Kwaadsteniet, M., van Reenen, C., Dicks, L., (2010), ―Evaluation

of nisin F in the treatment of subcutaneous skin infections, as

Page 11: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

monitored by using a bioluminescent strain of Staphylococcus

aureus‖, Probiotics Antimicrob Proteins , 2, 61–65.

De Man, J.C., Rogosa, M., Sharpe, M.E., (1960), ―A medium for the

cultivation of Lactobacilli‖, J Appl Bacteriol, 23, 130–135.

De Vuyst, L., (1995), ―Nutritional factors affecting nisin production

by Lactococcus lactis subsp. lactis NIZO 22186 in a synthetic

medium‖, J Appl Bacteriol, 78, 28–33.

De Vuyst, L., Callewaert, R., Crabbe, K., (1996), ―Primary metabolite

kinetics of bacteriocins biosynthesis by Lactobacillus amylovorus

and evidence for stimulation of bacteriocins production under

unfavorable growth conditions‖, Microbiol, 142, 817–827.

Deegan, L.H., Cotter, P.D., Hill, C., Ross, P., (2006), ―Bacteriocins:

Biological tools for bio-preservation and shelf-life extension‖, Int

Dairy J, 16, 1058–1071.

Desai, C., Jain, K., Madamwar, D., (2007), ―Evaluation of in vitro

Cr(VI) reduction potential in cytosolic extracts of three indigenous

Bacillus sp. isolated from Cr(VI) polluted industrial landfill‖,

Bioresour Technol, 99, 6059–6069.

Desriac, F., Defer, D., Bourgougnon, N., Brillet, B., Le Chevalier, P.,

Fleury, Y., (2010), ―Bacteriocin as weapons in the marine animal-

associated bacteria warfare: Inventory and potential applications

as an aquaculture probiotic‖, Mar Drugs, 8, 1153-1177.

Dicks, L.M.T., Heunis, T.D.J., Staden, D.A., Brand, A., Noll, K.S.,

Chikindas, M.L., (2001), ―Medical and personal care applications of

bacteriocins produced by lactic acid bacteria. In: Drider, D.,

Rebuffat, S., Prokaryotic antimicrobial peptides, Springer, New York

391–421.

Page 12: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Dong X, Cai, M., (2001), ―Determinative manual for routine

bacteriology‖, Scientific Press, Beijing, 455–480

Dover, S.E., Aroutcheva, A.A., Faro, S., Chikindas, M.L., (2007),

―Safety study of an antimicrobial peptide lactocin 160, produced by

the vaginal Lactobacillus rhamnosus‖, Infect Dis Obstet Gynecol.

doi:10.1155/2007/78248.

Drider, D., Fimland, G., Hechard, Y., McMullen, L.M., Prevost, H.,

(2006), ―The continuing story of class IIa bacteriocin‖, Microbial

Mol Biol Rev, 70,564-582.

Dykes, G.A., Amarowicz, R., Pegg, R. B., (2003), ―Enhancement of

nisin antibacterial activity by a bearberry (Arctostaphylos uva-ursi)

leaf extract‖, Food Microbiol, 20, 211-216.

Eijsink, V.G., Axelsson, L., Diep, D.B., Havarstein, L.S., Holo, H.,

Nes, I.F., (2002), ―Production of class II bacteriocins by lactic acid

bacteria; An example of biological warfare and communication‖,

Anton Leeuw, 81, 639-654.

Elotmani, F., Assobhei, O., (2004), ―In vitro inhibition of microbial

flora of fish by nisin and lactoperoxidase system‖, Lett Appl

Microbiol, 38, 60-65.

Enan, G., Essawy, A. A., Uyttendaele, M., and Debevere, J, (1996),

―Antibacterial activity of Lactobacillus plantarum UG1 isolated

from dry sausage: Characterization, production and bactericidal

action of plantaricin UG1‖, Int J Microbiol, 30, 189–215.

Engelke, G., Gutowski-Eckel, Z., Kiesau, P., Siegers, K.,

Hammelmann, M., Entian, K.-D., (1994), ―Regulation of nisin

biosynthesis and immunity in Lactococcus lactis 6F3‖, Appl Environ

Microbiol, 60, 814-825.

Page 13: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Ennahar, S., Sashihara, T., Sonomoto, K., Ishizaki, A., (2000), ―Class

IIa bacteriocins: biosynthesis, structure and activity‖, FEMS

Microbiol Rev, 24, 85–106.

Espitia, P.J., Soares, N. F., Teófilo, R.F., Coimbra, J.S., Vitor, D.M.,

Batista, R.A., Ferreira, S.O., de Andrade, N.J., Medeiros, E.A., (2013),

―Physical-mechanical and antimicrobial properties of

nanocomposite films with pediocin and ZnO nanoparticles‖,

Carbohydr Polym, 94,199-208.

Ettayebi, K., J. E. Y., Rossi-Hassani, B., (2000), ―Synergistic effect of

nisin and thymol on antimicrobial activities in Listeria

monocytogenes and Bacillus subtilis‖, FEMS Microbiol Lett, 183,

191–195.

Fimland, G., Blingsmo, O.R., Sletten, K., Jung, G., Nes, I.F., Nissen-

Meyer, J., (1996), ―New biologically active hybrid bacteriocins

constructed by combining regions from various pediocin-like

bacteriocins: the C-terminal region is important for determining

specificity‖, Appl Environ Microbiol, 62, 3313–3318.

Galvez, A., Abriouel, H., Lopez, R.L., Ben Omar, N., (2007),

―Bacteriocin-based strategies for food biopreservation‖, Int J Food

microbiol, 120, 51-70.

Galvez, A., Lopez, R.L., Abriouel, H., Valdivia, E., Omar, N.B.,

(2008), ―Application of bacteriocins in the control of foodborne

pathogenic and spoilage bacteria‖, Crit reviews biotechnol, 28,125-

152.

Galvin, M., Hill, C., Ross, R.P., (1999), ―Lacticin 3147 displays

activity in buffer against Gram-positive bacterial pathogens which

appear insensitive in standard plate assays‖, Lett Appl Microbiol,

28, 355–358.

Page 14: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

García, P., Rodríguez, L., Rodríguez, A., Martínez, B., (2010), ―Food

biopreservation: promising strategies using bacteriocins,

bacteriophages and endolysins‖, Trends Food Sci Technol, 21,373-

382.

Garga, N., Tangb, W., Gotob, Y., Naira, S.K., van der Donka, W.A.,

(2012), ―Lantibiotics from Geobacillus thermodenitrificans‖, PNAS,

109,5241–5246.

Gargis, S.R., Gargis, A.S., Heath, H.E., Heath, L.S., LeBlanc, P.A.,

Senn, M.M., Berger-Bachi, B., Simmonds, R.S., Sloan, G.L., (2009),

―Zif, the zoocin A immunity factor, is a FemABX-like immunity

protein with a novel mode of action‖, Appl Environ Microbiol, 75,

6205–6210.

Garland, J. L., (1996), ―Patterns of potential C source utilization by

rhizosphere communities‖, Soil Biol Biochem, 28, 223–230.

Garsa, A.K., Kumariya, R., Sood, S.K., Kumar, A., Kapila, S., (2014),

―Bacteriocin production and different strategies for their recovery

and purification‖, Probiotics and Antimicro Prot, 6, 47–58.

Ge, B., Jiang, P., Han, F., Saleh, N.K., Dhiman, N., Fedorko,

D.P.,Nelson, N.A., Meng, J. (2007), ―Identification and

antimicrobial susceptibility of lactic acid bacteria from retail

fermented foods‖, J Food Prot, 70, 2606-2612.

Gebreselema, G., Feleke, M., Samuel, S., Nagappan, R., (2013),

―Isolation and characterization of potential antibiotic producing

Actinomycetes from water and sediments of lake Tana Ethiopia‖,

Asian Pac J Trop Biomed, 3, 426-435.

Geisen, R., Becker, B., Holzapfel, W.H., (1993), ―Bacteriocin

production of Leuconostoc carnosum LA54A at different

Page 15: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

combinations of pH and temperature‖, J Indus Microbiol, 12, 337–

340.

Ghobrial, O.G., Derendorf, H., Hillman, J.D., (2009),

―Pharmacodynamic activity of the lantibiotics MU 1140‖, Int J

Antimicrob Agents, 33, 7074.

Ghrairi, T., Frere J., Berjaud, J.M., Manai, M., (2008), ―Purification

and characterization of bacteriocins produced by Enterococcus

faecium from Tunisian rigouta cheese‖, Food Control, 19, 162-169.

Gisela, A., Gerbaldo, C. B., Liliana, P., Ana, D., (2012), Lucila, B.,

―Antifungal activity of two Lactobacillus strains with potential

probiotic properties‖, FEMS Microbiol Lett, 332, 27–33.

Goldman, M., Deiel, R. H., Niven, Jr. C. F., (1963), ―Interrelationship

between temperature and sodium chloride on growth of lactic acid

bacteria isolated from meat-curing brines‖, J Bacteriol, 85, 1017-

102.

Gong, H.S., Meng, X.C., Wang, H., (2009), ―Plantaricin MG active

against Gram-negative bacteria produced by Lactobacillus

plantarum KLDS1.0391 isolated from Jiaoke, a traditional

fermented cream from China‖, Food Control , 21, 89–96.

Gonzalez, B., Arca, P. Mayo, B., Suarez, J., (1994), “Detection,

purification and partial characterization of plantaricin C, a

bacteriocin produced by a Lactobacillus plantarum strain of dairy

origin‖, Appl Environ Microbiol, 6, 2158–2163.

González-Martínez, B.E., Gómez-Treviño, M., Jiménez-Salas, Z.,

(2003), ―Bacteriocinas de probióticos‖, Rev Salud Pública y

Nutrición, 4.

Graciella, M., Vignolo, M., de Kairuz, M., Aida, A.P., de Ruiz, H.,

Oliver, G., (1995), ―Influence of growth conditions on the

Page 16: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

production of lactocin 705, a bacteriocin produced by L casei CRL

705‖, J Appl Bacteriol, 78, 5-10.

Grangette, C., Müller-Alouf, H.D., Goudercourt, M.C., Geoffroy, M.,

Turneer, A., Mercenier., (2001), ―Mucosal immune responses and

protection against tetanus toxin after intranasal immunization with

recombinant Lactobacillus plantarum”, Infect Immun, 69, 1547-

1553.

Grasemann, H., Stehling, F., Brunar, H., Widmann, R., Laliberte, T.W.,

Molina, L, Doring, G, Ratjen, F., (2007), ―Inhalation of Moli 1901 in

patients with cystic fibrosis‖, Chest, 131, 1461–1466.

Guardabassi, L., Courvalin, P., (2006), ―Modes of antimicrobial action

and mechansims of bacterial resistance‖, In: Aarestrup, F.M. (Ed.)

Antimicrobial resistance in bacteria of animal origin, ASM Press,

Washington, USA:. pp. 1-18.

Guerra N, Pastrana L., (2001), ―Enhanced nisin and pediocin

production on whey supplemented with different nitrogen

sources‖, Biotech Lett, 23, 609-612.

Guerreiro, J., Monteiro, V., Ramos, C., de Melo Franco, B.D.,

Martinez, R.C., Todorov, S.D., Fernandes, P., (2014), ―Lactobacillus

pentosus B231 Isolated from a Portuguese PDO Cheese: Production

and Partial Characterization of Its Bacteriocin‖, Probiotics

Antimicrob Proteins, 6, 95-104.

Guyonnet, D., Fremaux, C., Cenatiempo, Y. Berjeaud, J. M. (2000),

―Method for rapid purification of class IIa bacteriocins and

comparison of their activities‖, Appl Environ Microbiol, 66, 1744-

1748.

Page 17: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Halami, P.M., Chandrashekar, A., (2005), ―Enhanced production of

pediocin C20 by a native strain of Pediococcus acidilactici C20 in an

optimized food-grademedium‖, Process Biochem, 40, 1835–1840.

Hammami, R., Fernandez, B., Lacroix, C., Fliss, I., (2013), ―Anti-

infective properties of bacteriocins: an update‖, Cell Mol Life Sci,

70, 2947–2967.

Hammami, R., Zouhir, A., Le Lay, C., Ben Hamida, J., Fliss, I., (2011),

“Database mining for bacteriocin discovery”, Cabi Publishing,

Wallingford

Hans-Georg, S., Bierbaum, G., (1988), ―LANTIBIOTICS:

Biosynthesis and biological activities of uniquely modified peptides

from Gram-positive bacteria‖, Annu Rev Microbiol, 52, 41–79.

Harris, L.J., Daeschel, M.A., Stiles, M.E., Klaenhammer, T.R., (1989),

―Antimicrobial activity of lactic acid bacteria against Listeria

monocytogenes‖, J Food Prot, 52, 384-387.

Havarstein, L.S., Diep, B.D., Nes, I.F., (1995), ―A family of

bacteriocin ABC transporters carry out proteolytic processing of

their substrates concomitant with export‖, Mol Microbiol, 16, 229-

240.

Havarstein, L.S., Holo, H. Nes, I.F., (1994), ―The leader peptide of

colicin V shares consensus sequences with leader peptides that are

common amongst peptide bacteriocins produced by Gram-positive

bacteria‖, Microbiol, 140, 2383-2389.

Hayat, R., Ahmed, I., Peak, J., Muhammad, E. et al. (2013), ―A

moderately boron tolerant candidatus novel soil bacterium

Lysinibacillus pakistanensis sp. nov. cand., isolated from soybean

(Glycine Max.L) rhizosphere‖, Pak J Bot, 45, 41-50.

Page 18: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Hofvendahl, K..A.E., van Niel, W. J., Hahn-Ha, È., Gerdal, A.B.,

(1998), ―Effect of temperature and pH on growth and product

formation of Lactococcus lactis sp. lactis ATCC 19435 growing on

maltose‖, Appl Microbiol Biotechnol, 51, 669- 672.

Holzapfel, W.H., P. Haberer., R. Geisen, J. Bjorkroth, U. Schillinger.,

(2001), ―Taxonomy and important features of probiotic

microorganisms in food nutrition‖, Am J Clin Nutr, 73, 365-373.

Hoover, D. G., Steenson, L. R., (1993), ―Bacteriocins of lactic acid

bacteria‖, Academic Press, California, 181-206.

Hoover, D.G., Walsh, P.M., Kolaetis, K.M., Daly, M.M., (1988), ―A

bacteriocin produced by Pediococcus species associated with a 5.5-

megadalton plasmid‖, J Food Prot, 51, 29–31.

Howell, T.H., Fiorellini, J.P., Blackburn, P., Projan, S.J., de la Harpe,

J., Williams, R.C., (1993), ―The effect of a mouthrinse based on

nisin, a bacteriocin, on developing plaque and gingivitis in beagle

dogs‖, J Clin Periodontol, 20, 335–339.

Huang, E., Zhang, L., Chung, Y.K., Zheng Z., Yousef, A.E., (2013),

―Characterization and application of enterocin RM6, a bacteriocin

from Enterococcus faecalis‖, Biomed Res Int, 206917. doi:

10.1155/2013/206917.

Hurst, A., (1981), ―Nisin‖, Adv Appl micro, Laskin, D., Eds, Al,

Acedmic press, Newyork, 27.

Imran, M., Anne-Marie, R. J., de Bruin, M., Paris, C., Breukink, E.,

Desobry, S., (2013), ―Fluorescent labeling of nisin Z and assessment

of anti-listerial action‖, J Microbiol Methods, 95, 107–113.

Ismail, A., Soultani, S., Ghoul, M., (1998), ―Optimization of the

enzymatic synthesis of butyl glucoside using response surface

methodology‖, Biotechnol Prog, 14, 874–878.

Page 19: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Ivanova, I., Kabadjova, P., Pantev, A., Danova, S., Dousset, X.,

(2000), ―Detection, purification and partial characterization of a

novel bacteriocin substance produced by Lactococcus lactis subsp.

lactis B14 isolated from Boza-Bulgarian traditional cereal

beverage‖, Biocatalysis, 41, 47-53.

Ivanova, I., Miteva, V., Stefanova, T.S., Pantev, A., Budakov, I.,

Danova, S .,Montcheva, P., Nikolova, I., Dousset, X., Boyaval, P.,

(1998), ―Characterizations of a bacteriocin produced by

Streptococcus thermophilus 81‖, Int J Food Microbiol, 42, 147-158.

Izquierdo, E., Wagner, C., Marchioni, E., Aoude-Werner D, Ennahar,

S., (2009), ―Enterocin 96, a novel class II bacteriocin produced by

Enterococcus faecalis WHE 96, isolated from munster cheese‖,

Appl Environ Microbiol, 75, 4273–4276.

Jabeen, N., Gul, H., Subhan, Hussain, S.A., Ajaz, M., Rasool, A.S,M.,

(2009), ―Biophysicochemical characterization of bacteriocin(s)

from indigenously isolated agrobacterium radiobacter na6‖, Pak J

Bot, 41, 3227-3237.

Jabes, D., Brunati, C., Candiani, G., Riva, S., Romano, G., Donadio, S.,

(2011), ―Efficacy of the new lantibiotic NAI-107 in experimental

infections induced by MDR Gram-positive pathogens‖, Antimicrob

Agents Chemother, doi:10.1128/ aac.01288-10.

Jack, R. W., Tagg, J. R.., Ray, B., (1995), ―Bacteriocins of Gram-

positive bacteria‖, Microbiol Rev, 59, 171-200.

Javadpour, M.M., Juban, M.M., Lo, W.C., Bishop, S.M., Alberty, J.B.,

Cowell, S.M., Becker, C.L., McLaughlin, M.L.,(1996), ―De novo

antimicrobial peptides with low mammalian cell toxicity‖, J Med

Chem, 39, 3107–3113.

Page 20: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Jay, J.M., (1996), ―Modern food microbiology‖ 5th Ed. Chapman and

Hall, New York, pp 635 .

Joerger, M. C., and Klaenhammer, T. R., (1986), ―Characterization

and purification of helveticin J and evidence for a choromosomally

determined bacteriocin produced by Lactobacillus helveticus 481‖,

J Bacteriol, 167, 439-446.

Juarez T.M.S., Bru, E., Wiese, B., de Ruiz Holgado, A.A.P., Nader-

Macias, M.E., (2002), ―Influence of pH, temperature and culture

media on the growth and bacteriocin production by vaginal

Lactobacillus salivarius CRL 1328‖, J Appl Microbiol, 93, 714-724.

Jung, M.Y., Kim, J.S., Paek, W.K., Styrak, I., Park, I.S., Sin, Y., Paek,

J., Park, K.A., Kim, H. et al., (2012), ―Description of Lysinibacillus

sinduriensis sp. nov., and transfer of Bacillus massiliensis and

Bacillus odysseyi to Lysinibacillus as Lysinibacillus massiliensis

comb. nov. and Lysinibacillus odysseyi comb. nov. with emended

description of the genus‖, Int J Syst Evol Microbiol, 62, 2347–

2355.

Kaewnopparat, S., Dangmanee, N., Kaewnopparat, N., Srichana, T.,

Chulasiri, M., Settharaksa, S., (2013), ―In vitro probiotic properties

of Lactobacillus fermentum SK5 isolated from vagina of a healthy

woman‖, Anaerobe, 1-8.

Kaiser, C., van der Merwe, R, Bekker, T F., Labuschagne, N., (2005),

In vitro inhibition of mycelial growth of several phytopathogenic

fungi, including Phytophthora cinnamomi by soluble silicon, South

African Avocado Growers’ Association Yearbook, 28.

Kam, P.V., Bianchini, A., Bullerman, L.B., (2007), ―Inhibition of

mold growth by sourdough bread cultures‖, Rurals, 2, 1–12.

Page 21: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Kampfer, P., (1990), ―Evaluation of the Titertek-Enterobac-

Automated system (TTE-AS) for identification of

Enterobacteriaceae‖, Zentbl Bakteriol, 273, 164–172.

Kampfer, P., Martin, K., Glaeser, S. P., (2013), ―Lysinibacillus

contaminans sp. nov., isolated from a surface water‖, Int syst Evol

Micro, 63, 3148-3153.

Kampfer, P., Steiof, M., Dott, W., (1991), ―Microbiological

characterisation of a fuel-oil conta-ated site including numerical

identification of heterotrophic water and soil bacteria‖, Microbiol

Ecol, 21, 227–243.

Kandler, O., Weiss.N., (1986), ―Regular, nonsporing gram-positive

rods, In P. H. A. Sneath (ed.), Bergey’s manual of systematic

bacteriology, Vol. 2 Williams and Wilkins, Baltimore, Md., pp1208–

1234.

Kandler, O., Weiss, N., (1986), ―Genus Lactobacillus Beijerinck‖,

AL. In P. H. A. 1901, 212

Kang, B., Seo, J.G., Lee, G.S., Kim, J.H., Kim, S., Han, Y., Kang, H.,

Kim, H., Rhee, J., Chung, M.J., Park, Y., (2009), ―Antimicrobial

activity of enterocins from Enterococcus faecalis SL-5 against

Propionibacterium acnes, the causative agent in acne vulgaris and

its therapeutic effect‖, J Microbiol, 47, 101–109.

Karaoglu, A., Aydin., F. Kilic S. Kilic, A., (2003), ―Antimicorbial

activity and characteristics of bacteriocins produced by vaginal

Lactobacilli‖, Turk J Med Sci, 33, 7-13.

Karthikeyan, V., Santosh, S.W., (2009), ―Isolation and partial

characterization of bacteriocin produced from Lactobacillus

plantarum‖, Afr J Microbiol Res, 3, 233-239.

Page 22: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Kashket, E.R., (1987), ―Bioenergetics of lactic acid bacteria:

cytoplas- mic pH and osmotolerance‖, FEMS Microbiol Rev, 46,

233-244.

Kato, T., Matsuda, T., Ogawa, E., Ogawa, H., Kato, H., Doi, U.,

Nakamura, R., (1994), ―Plantaricin-149, a bacteriocin produced by

Lactobacillus plantarum NRIC 149‖, J Ferment Bioeng, 77, 277–

282.

Kaur, B., Balgir, P.P., Mittu, B., Kumar, B., Garg, N., (2013),

―Biomedical applications of fermenticin HV6b isolated from

Lactobacillus fermentum HV6b MTCC10770‖, BioMed Res Int,

2013. http://dx.doi.org/10.1155/2013/168438.

Kelly, W. J., Asmundson, R. V., Huang, C. M., (1996),

―Characterization of plantaricin KW30, a bacteriocin produced by

Lactobacillus plantarum‖, J Appl Bacteriol, 81, 657–662.

Keppler, K., Geisen, R., Holzapfel, W. H., (1994), ―An amylase

sensitive bacteriocin of Leuconostoc carnosum‖, Food Microbiol, 11,

39-45.

Khali, R.K., (2009), ―Evidence for probiotic potential of a capsular

producing Streptococcus thermophilus CHCC 3534 strain‖, Afr J

Microbiol Res, 3, 27-34

Khan, M.A., Hamid, R., Ahmad, M., Abdin, M.Z., Javed, S., (2010),

―Optimization of culture media for enhanced chitinase production

from a novel strain of Stenotrophomonas maltophilia using response

surface methodology‖, J Microbiol Biotechnol, 20, 1597–1602.

Khay, E., Idaomar, M., Lorenzo, Castro, L.M.P., Bernárdez, P. F.,

Senhaji, N., Abrini, J., (2011), ―Antimicrobial activities of the

bacteriocin-like substances produced by lactic acid bacteria

Page 23: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

isolated from Moroccan dromedary milk‖, Afr J Biotechnol, 10,

10447-10455.

Kim, O.S., Cho, Y. J., Lee, K.,Yoon, S. H., Kim, M., Na, H., Park, S.

C., Jeon, Y. S., Lee, J. H., Yi, H., (2012), ―Introducing EzTaxon-e: a

prokaryotic 16S rRNA gene sequence database with phylotypes

that represent uncultured species‖, Int J Syst Evol Microbiol, 62,

716–721.

Kim, S.Y., Shin, H., Koo, H.C., Youn, J.H., Paik, H.D., Park, Y.H.,

(2010), ―In vitro antimicrobial effect and in vivo preventive and

therapeutic effects of partially purified lantibiotic lacticin NK34

against infection by Staphylococcus species isolated from bovine

mastitis‖, J Dairy Sci, 93, 3610–3615.

Kim, W.S., Hall, R.J., Dunn, N.W. (1997), ―The effect of nisin

concentration and nutrient depletion on nisin production

of Lactococcus lactis‖, Appl Microbiol Biotechnol, 48, 449–453.

Kiran, K.R., Karanth, N.G., Divakar, S., (1999), ―Preparation of

stearoyl lactic acid catalyzed by lipases from Rhizomucor miehei

and Porcine pancreas optimization using response surface

methodology‖, Appl Microbiol Biotechnol, 52, 579–584.

Kjos, M., Nes, I.F., Diep, D.B., (2009), ―Class II one-peptide

bacteriocins target a phylogenetically defined subgroup of mannose

phosphotransferase systems on sensitive cells‖, Microbiol, 155,

2949–2961.

Klaenhammer, T. R., (1988), ―Bacteriocins of lactic acid bacteria‖,

Biochimie, 70, 337–349.

Klaenhammer, T.R., Kullen, M.J. (1999), ―Selection and design of

probiotics‖, Int J Food Microbiol, 50, 45–57.

Page 24: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Kleerebezem, M., Hugenholtz, J., (2003), ―Metabolic pathway

engineering in lactic acid bacteria‖, Curr Opin Biotechnol, 14, 232-

237.

Klostermann, K., Crispie, F., Flynn, J., Meaney, W.J., Paul, R. R., Hill,

C., (2010), ―Efficacy of a teat dip containing the bacteriocin lacticin

3147 to eliminate Gram-positive pathogens associated with bovine

mastitis‖, J Dairy Res, 77, 231–238.

Knoetze, H., Todorov, S.D., Dicks, L.M.T., (2008), ―A class IIa

peptide from Enterococcus mundtii inhibits bacteria associated with

otitis media‖, Int J Antimicrob Agents, 31, 228–234.

Kole, R., Krainer, A. R., Altman, S., (2012), ―RNA therapeutics:

Beyond RNA interference and antisense oligonucleotides‖, Nat Rev

Drug Discov , 11, 125–140.

Kozak, W., Bardowski, J., Dobrzanski, W.T., (1978), ―Lactostrepcins-

acid bacteriocins produced by Lactic streptococci‖, J Dairy Res, 45,

247-257.

Kruszewska, D., Sahl, H.G., Bierbaum, G., Pag, U., Hynes, S.O.,

Ljungh, A., (2004), ―Mersacidin eradicates methicillin-resistant

Staphylococcus aureus (MRSA) in a mouse rhinitis model‖, J

Antimicrob Chemother, 54, 648–653.

Kuipers, 0. P., Beerthuyzen, M. M., Siezen, R. J., de Vos, W. M.,

(1993), ―Characterization of the nisin gene cluster nisABTCIPR of

Lactococcus lactis‖, Eur J Biocbem, 216, 281-291.

Lade, H. S., Chitanand, M. P., Gyananath, G., Kadam, T. A., (2006),

―Studies on some properties of bacteriocins produced by

Lactobacillus species isolated from agro-based waste‖, The Internet

J Microbiol, 2(1). https://ispub.com/IJMB/2/1/13427.

Page 25: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Laemmli, U.K., (1975), ―Cleavage of structural proteins during the

assemble of the head of bacteriophase T4‖, Nature, 227, 680-685.

Laitila A., Alakomi H.L., Raska L., Matila-Sandholm, T., Haikara A.

(2002), ―Antifungal activites of two Lactobacilus plantarum strains

against Fusarium moulds in vitro and in malting of barley‖, J Appl

Microbiol, 93, 56–576.

Lan, R., Reeves, P.R., (1996) ―Gene transfer is a major factor in

bacterial evolution‖, Mol Biol Evol, 13, 47-55.

Lange-Starke, A., Petereit, A., Truyen, U., Braun, P.G., Fehlhaber, K.,

Albert, T.,(2013), ―Antiviral Potential of Selected Starter Cultures,

Bacteriocins and D, L-Lactic Acid‖, Food Environ Virol. PMID:

24297091.

Lavermicocca, P., Valerio, F., Evidente, A., Lazzaroni, S., Corsetti, A.,

Gobbetti, M., (2000), ―Purification and characterization of novel

antifungal compounds from the sourdough Lactobacillus plantarum

strain 21B‖, Appl Environ Microbiol, 66, 4084-4090.

Lazzarini, A., Gastaldo, L., Candiani, G., Ciciliato, I., Losi, D.,

Marinelli, F., Selva, E., Parenti, F., (2008), ―Antibiotic 107891, its

factors A1 and A2, pharmaceutically acceptable salts and

compositions, and use thereof‖, US Patent #07351687.

Lee, C.S., Jung, Y.T., Park, S., Oh, T.K., Yoon, J.H., (2013),

―Lysinibacillus xylanilyticus sp. nov., a xylane degrading bacterium

isolated from forest humus‖, Int J Syst Evol Microbiol, 60, 281-286.

Lee, Y.M., Kim, J.S., Kim, W.J., (2012), ―Optimization for the

Maximum Bacteriocin Production of Lactobacillus brevis DF01

Using Response Surface Methodology‖, Food Sci. Biotechnol, 21,

653-659.

Page 26: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Lewus, C.B., and Montville. T.J., (1991), ―Detection of bacteriocins

produced by lactic acid bacteria‖, J Microbiol Methods, 13, 145-

150.

Li, C., Bai, J., Cai, Z., Ouyang, Fan., (2002), ―Optimization of a

cultural medium for bacteriocin production by Lactococcus lactis

using response surface methodology‖, J Biotechnol, 93, 27–34.

Li, C., Bai, J., Li, W., Cai, Z., Ouyang, F., (2001), ―Optimization of

conditions for bacteriocin extraction in PEG/salt aqueous two-

phase systems using statistical experimental designs‖, Biotechnol

Prog, 17, 366–368.

Li, C., Ouyang, F., Bai, J., (2000), ―Extractive cultivation of

Lactococcus lactis using a polyethylene glycol/MgSO4 · 7H2O

aqueous two-phase system to produce nisin‖, Biotechnol Lett, 22,

43-847.

Li, Y., Xiang, Q., Zhang, Q., Huang, Y., Su, Z., (2012), ―Overview on

the recent study of antimicrobial peptides: Origins, functions,

relative mechanisms and application‖, Peptides, 37, 207–215.

Liu, X., Chung, Y.K., Yang, S.T., Yousef, A.E., (2005), ―Continuous

nisin production in laboratory media and whey permeate by

immobilized Lactococcus lactis‖, Process Biochem, 40, 13–24.

Lowry, O.H., Rosenbrough, N.J., Farr, A.L., Randall, R.J., (1951),

―Protein measurement with the Follin phenol reagent‖, J Biol

Chem,183, 265-275

Lozano, J.C.N., Meyer, J.N., Sletten, K., Pelaz, C., Nes, I.F., (1992),

―Purification and amino acid sequence of a bacteriocin produced

by Pediococcus acidilactici‖, J Gen Microbiol, 138, 1985–1990.

Luders, T., Birkemo, G.A., Fimland, G., Nissen-Meyer, J., Nes, I.F.,

(2003), ―Strong synergy between a eukaryotic antimicrobial

Page 27: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

peptide and bacteriocins from lactic acid bacteria‖, Appl Env

Microbiol, 69, 1797-1799.

Mackay, V. C, Arenose, G., Hastings, J. W., (1997), ―Purification of

bacteriocins of lactic acid bacteria: problems and pointers”, J Food

Microbiol, 34, 1-16.

Magnusson, J., Schnurer, J., (2001), ―Lactobacillus coryniformis

subsp. coryniformis strain Si3 produces a broad-spectrum

proteinaceous antifungal compound‖, Appl Environ Microbiol, 67,

1–5.

Magnusson, J., Strom, K, Roos, S., Sjogren, J., Schnurer, J., (2003),

―Broad and complex antifungal activity among environmental

isolates of lactic acid bacteria‖, FEMS Microbiol Lett, 219, 129-35.

Mandell, L.A., Wunderink, R.G,, Anzueto, A., Bartlett, J.G., Campbell,

G.D., Dean, N.C., Dowell, S.F., File, T.M., Musher, D.M., Niederman.

M.s.,Torres, A, Whitney, C.G., (2007), ―Infectious diseases Society of

America American Thoracic Society consensus guidelines on the

management of community-acquired pneumonia in adults‖, Clin

Infect Dis, 44, 27–72.

Manilduth, R., Safia, A., Anne, G., John, W. H., Yann, H., (2004),

―Expression of mptC of Listeria monocytogenes induces sensitivity

to class IIa bacteriocins in Lactococcus lactis‖, Microbiology, 150,

2663–2668.

Manosroi, A., Khanrin, P., Lohcharoenkal, W., Werner, R.G., Go¨tz, F.,

Manosroi, W., Manosroi, J., (2010), ―Transdermal absorption

enhancement through rat skin of gallidermin loaded in niosomes‖,

Int J Pharm, 392, 304–310.

Martınez, B., Ferna!ndez, M., Rodrı!guez, A., Sua!rez, J. E., (1999),

“Synthesis of lactococcin 972, a bacteriocin produced by Lacto

Page 28: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

coccus lactis IPLA 972, depends on the expression of a plasmid

encoded bicistronic operon‖, Microbiol, 145, 3155–3161.

Martínez, B., Obeso, J.M., Rodríguez, A., García, P., (2008) ―Nisin-

bacteriophage cross resistance in Staphylococcus aureus‖, Int J of

Food Microbiol, 122, 253-258.

Martınez, B., Rodrıguez, A.,. Suarez, J. E., (2000) ―Lactococcin 972, a

bacteriocin that inhibits septum formation in Lactococci‖,

Microbiol, 146, 949-55.

Martin-Visscher, L.A., van Belkum, M.J., Garneau-Tsodikova, S.,

Whittal, R.M., Zheng, J, McMullen, L.M., Vederas, J.C., (2008),

―Isolation and characterization of Carnocyclin A, a novel circular

bacteriocin produced by Carnobacterium maltaromaticum

UAL307‖, Appl Environ Microbiol, 74, 4756–4763.

Mataragas, M., Drosinos, E.H., Tsakalidou, E., Metaxopoulos, J.,

(2004), ―Influence of nutrients on growth and bacteriocin

production by Leuconostoc mesenteroides L124 and Lactobacillus

curvatus L442‖, Anton Leeuw Int J G, 85, 191-198.

Matsui, H., Sano, Y., Ishihara, H., Shinomiya, T., (1993), ―Regulation

of pyocin genes in Pseudomonas aeruginosa by positive (prtN) and

negative (prtR) regulatory genes‖, J bacteriol, 175, 1257-1263.

Matsusaki, H., Endo, N. Sonomoto, K., Ishizaki, A., (1996),

―Lantibiotic nisin Z fermentative production by Lactococcus lactis

IO-1: relationship between production of the lantibiotic and lactate

and cell growth‖, Appl Microbiol Biotechnol, 45, 36-40.

McAuliffe, O., Ross, R. P., Hill, C., (2001), ―Lantibiotics: structure,

biosynthesis and mode of action‖, FEMS Microbiol Rev, 25, 285-

308.

Page 29: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

McCall, J.O., Sizemore, R.K., (1979), ―Description of a

bacteriocinogenic plasmid in Beneckea harveyi‖, Appl Environ

Microbiol, 38, 974-979.

McConville, M., Enright, M. C., (2011), ―Bacteriophage therapy:

Potential uses in the control of antibioticresistant pathogens‖,

Expert Rev Anti Infect Ther, 9, 775–785.

McCormick, J.K., Worobo, R.W., Stiles, M.E., (1996), ―Expression of

the antimicrobial peptide carnobacteriocin B2 by a signal

peptidedependent general secretory pathway‖, Appl Environ

Microbiol , 62, 4095-4099.

Merril, C.R., (1990), ―Silver staining of proteins and DNA‖, Nature,

343, 779-80.

Messi, P., Bondi, M, Sabia, C., Battini, R., Manicardi, G., (2001),

―Detection and preliminary characterization of a bacteriocin

plantaricin 35d, produced by a Lactobacillus plantarum strain‖, Int

J Food Microbiol, 64, 193–198.

Michalet, S., Cartier, G., David, B., Mariotte, A.M., Dijoux-franca,

M.G., Kaatz, G.W., Stavri, M., Gibbons, S., (2007), ―N-

caffeoylphenalkylamide derivatives as bacterial efflux pump

inhibitors‖, Bioorg Med Chem Lett, 17, 1755–1758.

Michel-Briand, Y., Baysse, C., (2002), ―The pyocins of Pseudomonas

aeruginosa‖, Biochimie, 84, 499-510.

Minnikin, D.E., O'Donnell, A.G., Goodfellow, M., Alderson, G.,

Athalye, M., Schaal, A., Parlett, J. H., (1984), ―An integrated

procedure for the extraction of bacterial isoprenoid quinones and

polar lipids‖, J Microbiol Methods, 2, 233–241.

Page 30: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Miwa, H., Ahmed, I., Yokota, A., Fujiwara, T., (2009), ―Lysinibacillus

parviboronicapiens sp. nov., a low boron containing bacterium

isolated from soil‖, Int J Syst Evol Microbiol, 59, 1427-1432.

Miyauchi, E., OCallaghan, J., Buttó, L.F., Hurley, G., Melgar, S.,

Tanabe, et al., (2013), ―Mechanism of protection of transepithelial

barrier function by Lactobacillus salivarius: strain dependence and

attenuation by bacteriocin production Am‖, J Physiol Gastrointest

Liver Physiol, 1, 1029-1041.

Montville, T. J., Chen, Y., (1998), ―Mechanistic action of pediocin

and nisin: Recent progress and unresolved questions‖, Appl

Microbiol Biotechnol, 50, 511–519.

Moreno, I., Lerayer, A.S.L., Leitão, M. F. F., (1999), ―Detection and

characterization of bacteriocin producing Lactococcus lactis

strains‖, Rev Microbiol , 30, 130-136.

Morgan, S.M., Oconnor, P.M., Cotter, P.D., Ross, R.P, Hill, C., (2005),

―Sequential actions of the two component peptides of the lantibiotic

lacticin 3147 explain its antimicrobial activity at nanomolar

concentrations‖, Antimicrob Agents Chemother, 49, 2606-2611.

Morin, A., Saheb, S. A., Bisaillon, J. G., Beaudet, R., Sylvestre, M.,

(1980), ―Effect of culture medium composition on inhibition of

growth of Neisseria gonorrhoeae by Lactobacilli‖, Curr Microbiol ,

4, 283–286.

Mortvedt-Abildgaard, C.I., Nissen-Meyer, J., Jell, B. Grenov, B.

Skaugen, M.. Nes. I.F., (1995), ―Production and pH-dependent

bacteriocidal activity of lactocin S, a lantibiotic from Lactobacillus

sake L45‖, Appl Environ Microbiol, 61, 175-179.

Mota-Meira, M., Morency, H., Lavoie, M.C., (2005), ―In vivo activity

of mutacin B-Ny266‖, J Antimicrob Chemother, 56, 869–871.

Page 31: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Motta, A.S., Brandelli, A., (2002), ―Characterization of an

antibacterial peptide produced by Brevibacterium linens‖, J Appl

Microbiol, 92, 63–71.

Munoz., R., Arena., M.E., Silva, J., Gonza´lez, S.N., (2010),

―Inhibition of mycotoxin-producing Aspergillus nomius VSC 23 by

lactic acid bacteria and Saccharomyces cerevisiae”, Braz J

Microbiol, 41, 1019–1026.

Nagao, J.C., (2009), ―Properties and applications of lantibiotics, a

class of bacteriocin produced by Gram positive bacteria‖, J Oral

Bio Sci, 51, 158-164.

Naghmouchi, K., Fliss, I., Drider, D., Lacroix, C., (2008), ―Pediocin

PA-1production during repeated-cycle batch culture of

immobilized Pediococcus acidilactici UL5 cells‖, J Biosci Bioeng,

105, 513–517.

Naidu, A.S, Bidlack, W.R., Clemens, R.A., (1999), ―Probiotic spectra

of lactic acid bacteria (LAB)‖, Crit Rev Food Sci Nutr, 39, 13–126.

Nakamura, K., Arakawa, K., Kawai, Y., Yasuta, N., Chujo, T.,

Watanabe, M., Iioka, H., Tanioka, M., Nishimura, J., Kitazawa, H.,

Tsurumi, K., Saito, T., (2013), ―Food preservative potential of

gassericin A-containing concentrate prepared from a cheese whey

culture supernatant from Lactobacillus gasseri LA39‖, Anim Sci J,

84, 144-9.

Nakamura, T., N. Yamazaki., H. Taniguchi and S. Fujimura, (1983),

―Production, purification and properties of a bacteriocin from

Staphylococcus aureus isolated from saliva‖, Inf Imm, 39, 609-614.

Nakayama, K., Takashima, K., Ishihara, H., Shinomiya, T., Kageyama,

M., Kanaya, S., Ohnishi, M., Murata, T., Mori, H., Hayashi, T., (2000),

―The R-type pyocin of Pseudomonas aeruginosa is related to P2

Page 32: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

phage, and the F-type is related to lambda phage‖, Mol Microbiol,

38, 213-231.

Nascimento, J.G., Guerreiro-Pereira, M.D., Costa, S.F., Sao- José, C.,

Santos, M.A., (2008), ―Nisin-triggered activity of Lys44, the

secreted endolysin from Oenococcus oeni phage fOg44‖, J

Bacteriol, 190, 457–461.

Nascimento, M. S., Moreno, I., Kuaye, A. Y., (2008), ―Bacteriocins

em alimentos: uma revisão‖, Braz J food tech, 11, 120-127.

Natisha, L., Rose, P. S., McMullen, L.M., (1999), ―Detection of

bacteriocins by matrix-assisted laser desorption/ionization time-of-

flight mass spectrometry‖, Appl Env Microbiol, 65, 2238–2242.

Nedwell, D.B., (1999), ―Effect of low temperature on microbial

growth: lowered affinity for substrates limits growth at low

temperature‖, FEMS Microbiol Ecol, 1, 101-111.

Nedwell, D.B., Rutter, M., (1994), ―Infuence of temperature on

growth rate and competition between two psychrotolerant

Antarctic bacteria: low temperature diminishes afinity for

substrate uptake‖, Appl Environ Microbiol, 60, 1984-1992.

Neetoo, H., Ye, M., Chen, H., Joerger, R.D., Hicks, D.T., Hoover,

D.G., (2008), ―Use of nisincoated plastic films to control Listeria

monocytogenes on vacuum-packaged coldsmoked salmon‖, Int J

Food Microbiol, 122, 8-15.

Nel, H.A., Bauer, R., Vandamme, E.J., Dicks, L.M.T., (2001),

―Growth optimization of Pediococcus damnosus NCFB 1832 and

the influence of pH and nutrients on the production of pediocin

PD-1‖, J Appl Microbiol., 91, 1131-1138.

Page 33: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Nelson, P. G, M Luisa, R., Lorenzo, P.,(2001), ―Nutritional factors

affecting the production of two bacteriocins from lactic acid

bacteria on whey‖, Int J Food Microbiol,70, 267-281.

Nes, I.F., Diep, D.B., Havarstein, L.S., Brurberg, M.B., Eijsink V.,

Holo, H., (1996), ―Biosynthesis of bacteriocins in lactic acid

bacteria‖, Anton Van Leeuw, 70, 113–28.

Nigama, A., Gupta, D., Sharma, A., (2014), ―Treatment of infectious

disease:Beyond antibiotics‖, Microbiol Res, 169, 643-51.

Nikolova, D.Y., Evstatieva, R., Georgieva, S., Danova, V., Savov, S.,

Ilieva, P., Dalev, (2009), ―Molecular taxonomy characterization of

probiotic strain Lactobacillus 50P1”, 23SE, 779-782.

Nilsson, L., Huss, H.H., Gram, L., (1997), ―Inhibition of Listeria

monocytogenes on cold smoked salmon by nisin and carbon dioxide

atmosphere‖, Int J Food Microbiol, 38, 217-227.

Nykanen, A., Weckman, K., Lapvetelainen, A., (2000), ―Synergistic

inhibition of Listeria monocytogenes on cold-smoked rainbow trout

by nisin and sodium lactate‖, Int J Food Microbiol, 61, 63-72.

O'Flaherty, S., Coffey, A., Meaney, W., Fitzgerald, G.F., Ross, R.P.,

(2005), ―Recombinant phage lysin LysK has a broad spectrum of

lytic activity against clinically relevant staphylococci, including

methicillin-resistant Staphylococcus aureus‖, J Bacteriol, 187, 7161–

7164.

Ogunbanwo, S.T., Sanni, A.I.,. Onilude, A.A., (2003), ―Influence of

cultural conditions on the production of bacteriocin by

Lactobacillus brevis OG1‖, African J Biotech, 2, 179-84.

Oh, S., Rheem, S., Sim, J., Kim, S., Baek, Y., (1995), ―Optimizing

conditions for the growth of Lactobacillus casei YIT 9018 in

Page 34: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

tryptone-glucose medium by using response surface methodology‖,

Appl Environ Microbiol‖, 61, 3809– 3814.

Ohmomo, S., Kobayashi, M., Yajima, M., Suyanandana, P., Budka.,

Somchai, P., (1998), ―Screening of thermophilic lactic acid bacteria

producing bacteriocins in the tropics‖. http://2ohmomo.htm.

Oman, T.J., van der Donk, W. A., (2009), ―Insights into the mode of

action of the two-peptide lantibiotic haloduracin‖, ACS Chem Biol,

4, 865–874.

Ooijkaas, L.P., Wilkinson, E.C., Tramper, J., Buitelaar, R.M., (1999),

―Medium optimization for spore production of Coniothyrium

minitans using statistically-based experimental designs‖,

Biotechnol Bioeng, 64, 92–100.

Oppegard, C., Rogne, P., Kristiansen, P.E., Nissen- Meyer, J., (2010),

―Structure analysis of the two-peptide bacteriocin lactococcin G by

introducing D-amino acid residues‖, Microbiol, 156, 1883–1889.

Pal, A., Ramana, K.V., Bawa, A.S., (2010), ―Simplification and

optimization of de Man Rogosa Sharpe medium enhanced

production of bacteriocin by weissella paramesentroides DFR-8‖, J

Food Sci Technol, 47, 257-265.

Palanisamy, I., Thirumalai M., (2013), ―Optimization of bacteriocin

production by Lactobacillus sp‖, Aquatic Biosystems, 9, 1- 12.

Pangsomboon, K., Bansal, S., Martin, G.P., Suntinanalert, P.,

Kaewnopparat,S., Kaewnopparat, K., Srichana, T., (2009), ―Further

characterization of a bacteriocin produced by Lactobacillus

paracasei HL32‖, J Appl Microbiol, 106, 1928–1940.

Papagianni, M., (2003), ―Ribosomally synthesized peptides with

antimicrobial properties: biosynthesis, structure, function, and

applications‖, Biotechnol Adv, 21, 465–499.

Page 35: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Parente, E., Hill, C., (1992), ―A comparison of factors affecting the

production of two bacteriocins from lactic acid bacteria‖, J Appl

Bacterial, 73, 290 - 298.

Parente, E., Ricciardi, A., (1994), ―Influence of pH on the production

of enterocin 1146 during batch fermentation‖, Lett Appl Microbiol,

19, 12-15.

Parente, E., Ricciardi, A., (1999), ―Production, recovery and

purification of bacteriocins from lactic acid bacteria‖, Appl

Microbiol Biotechnol, 52, 628-638.

Pascual, L., Daniele, M., Giordano, W., Pajaro, M., Barberis, I., (2008),

―Purification and partial characterization of novel bacteriocin L23

produced by Lactobacillus fermentum L23‖, Curr Microbiol, 56,

397–402.

Pasic, L., Velikonja B.H., Ulrih N.P., (2008), ―Optimization of the

culture conditions for the production of a bacteriocin from

halophilic archaeon Sech7a.prep‖, Biochem. Biotechnol, 38, 229–

245.

Pasic, L., Velikonja, B.H., Ulrih, N.P., (2013), ―Optimization of the

culture conditions for the production of a bacteriocin from

Halophilic Archaeon Sech7a, Preparative‖, Biochem Biotechnol,

38, 3, 229-245.

Paul, D., Cotter, R., Paul, Ross., Colin, Hill., (2013), ―Bacteriocins a

viable alternative to antibiotics‖, Nat Rev Microbiol, 11, 95-105.

Pieterse, R., Todorov, S.D., Dicks, L.M.T., (2008), ―Bacteriocin

ST91KM, produced by Streptococcus gallolyticus subsp

macedonicus ST91KM, is a narrow-spectrum peptide active against

bacteria associated with mastitis in dairy cattle (Clinical report)‖,

Can J Microbiol, 54, 525(527).

Page 36: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Pieterse, R., Todorov, S.D., Dicks, L.M.T., (2010), ―Mode of action

and in vitro susceptibility of mastitis pathogens to macedocin

ST91KM and preparation of a teat seal containing the

bacteriocin‖, Brazilian J Microbiol, 41, 133–145.

Pilet, M.F., Leroi, F., (2011), ―Applications of protective cultures,

bacteriocins, and bacteriophages in fresh seafood and seafood

products, In: Protective cultures, antimicrobial metabolites and

bacteriophages for food and bevarage biopreservation‖, Zurich,

Switzerland, pp. 1- 21.

Piper, C., Casey, P.G., Hill, C., Cotter, P.D., (2012), ―The lantibiotic

Lacticin 3147 prevents systemic spread of S. aureus in a murine

infection model‖, Int J Microbiol , doi: 10.1155/2012/806230.

Piper, C., Draper, L.A., Cotter, P.D., Ross, R.P., Hill, C., (2009), ―A

comparison of the activities of lacticin 3147 and nisin against drug-

resistant Staphylococcus aureus and Enterococcus species‖, J

Antimicrob Chemother , 64, 546–551.

Piper, C., Hill, C., Cotter, P.D., Ross, R.P., (2011), ―Bioengineering of

a Nisin A-producing Lactococcus lactis to create isogenic strains

producing the natural variants Nisin F, Q Z‖, Microb Biotechnol,

4, 375–382.

Prema, P., Smila, D., Palavesam, A., Immanuel, G., (2008),

―Production and characterization of an antifungal compound (3-

Phenyllactic Acid) produced by Lactobacillus plantarum Strain‖,

Food Bioprocess Tech, 3, 379–386.

Qiu, X.Q., Wang, H., Lu, X.F., Zhang, J., Li, S.F., Cheng, G., Wan, L.,

Yang, L., Zuo, J.Y., et al., (2003), ―An engineered multidomain

bactericidal peptide as a model for targeted antibiotics against

specific bacteria‖, Nat Biotechnol, 21, 1480-5.

Page 37: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Rambaut, A. (2012) FigTree. Version 1.4.0. University of Edinburgh,

Edinburgh, UK. Available at: http://tree.bio.ed. .ac.uk/software/figtree

Rea, M.C., Clayton, E., O’Connor, P.M., Shanahan, F., Kiely, B., Ross,

R.P., Hill, C., (2007), ―Antimicrobial activity of lacticin 3147 against

clinical Clostridium difficile strains‖, J Med Microbiol, 56, 940–946.

Rea, M.C., Dobson, A., O’Sullivan, O., Crispie, F., Fouhy, F., Cotter,

P.D., Shanahan, F., Kiely, B., Hill, C., Ross, R.P., (2010), ―Effect of

broad and narrow-spectrum antimicrobials on Clostridium difficile

and microbial diversity in a model of the distal colon‖, Proc Natl

Acad Sci, doi:10.1073/pnas.1001224107.

Rea, M.C., Sit, C.S., Clayton, E., O'Connor, P.M., Whittal, R.M.,

Zheng, J., Vederas, J.C., Ross, R.P., Hill, C., (2010), ―Thuricin CD, a

posttranslationally modified bacteriocin with a narrow spectrum of

activity against Clostridium difficile‖, Proc Natl Acad Sci, 18,

107(20), 9352-7.

Reddy, K.V.R., Aranha, C., Gupta, S.M., Yedery, R.D., (2004),

―Evaluation of antimicrobial peptide nisin as a safe vaginal

contraceptive agent in rabbits: in vitro and in vivo studies‖,

Reproduction, 128,117–126.

Rose, N.L., Sporns, P., AcMullen, L.M., (1999), ―Detection of

bacteriocins by matrixassisted laser desorption/ionization-time of

flight mass spectrometry‖, Appl Environ Microbiol, 65, 2238-2242.

Russel, J.B., (1992), ―Another explanation for the toxicity of

fermen- tation acids at low pH: anion accumulation versus

uncoupling‖, J Appl Bacteriol, 73, 363-370.

Russell, N.J., (1992), ―Psychrophilic microorganisms. In: Molecular

Biology and Biotechnology of Extremophiles‖, Herbert, R.A. and

Sharp, R.S., Eds. Blackie, Glasgow, pp. 203-224..

Page 38: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Ryser, E. T., Richard, J. A., (1992), ―Detection of bacteriocin activity

in bacteria using hydrophobic grid membrane filters‖, Lett Appl

Microbiol, 14, 104-107.

Ryser, E.T., Marth, E.H., (1999), ―Listeria, listeriosis and food

safety‖, 2nd

Ed, Marcel Dekker, Inc., New York, 738.

Sahl, H.G., Bierbaum, G., (1998) ―LANTIBIOTICS: Biosynthesis and

biological activities of uniquely modified peptides from Gram-

positive bacteria‖, Annu Rev Microbiol, 52, 41–79.

Saitou, N., Nei, M., (1987), ―The neighbor-joining method: a new

method for reconstructing phylogenetic trees‖, Mol Biol Evol, 4,

406-25.

Salminen, S., E. Isolauri., Salminen E, (1996), ―Clinical uses of

probiotics for stabilizing the gut mucosal barrier: successful strains

and future challenges‖, Antonie van Leeuwenhoek, 70, 251-162.

Salvucci, E., Saavedra, L., Hebert, E.M., Haro, C., Sesma, F., (2012),

―Enterocin CRL35 inhibits Listeria monocytogenes in a murine

model‖, Foodborne Pathog Dis, 9, 68–74.

Sambrook, J., Russell, D.W., (2001), ―Molecular cloning: A

laboratory manual‖, New York: Cold spring Harbor Laboratory

Press: pp.A8.9-A8.11.

Sameiro, M., Gonalves, T., (2009), ―Fluorescent labeling of

biomolecules with organic probes‖, Chem Rev, 109, 190–212.

Sanchez, J., Diep, D.B., Herranz, C., Nes, I.F., Cintas, L.M.,

Hernandez, P.E., (2007), ―Amino acid and nucleotide sequence,

adjacent genes, and heterologous expression of hiracin JM79, a sec-

dependent bacteriocin produced by Enterococcus hirae DCH5,

isolated from Mallard ducks (Anas platyrhynchos)‖, FEMS

Microbiol Lett , 270, 227–236.

Page 39: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Sandiford, S., Upton, M., (2012), ―Identification, characterization

and recombinant expression of epidermicin NI01, a novel

unmodified bacteriocin produced by Staphylococcus epidermidis

that displays potent activity against Staphylococci‖, Antimicrob

Agents Chemother , 56, 1539–1547.

Sano, M.H., Ishihara, Y.H., Shinomiya, T., (1993), ―Regulation of

pyocin genes in Pseudomonas aeruginosa by positive (prtN) and

negative (prtR) regulatory genes‖, J bacteriol, 175, 1257-1263.

Sasser, M., (1990), ―Identification of bacteria by gas

chromatography of cellular fatty acids‖, MIDI Technical Note 101,

Newark, DE: MIDI Inc.

Saucier, L., Paradkar, A.S., Frost, L.S., Jensen, S.E., Stiles, M.E.,

(1997), ―Transcriptional analysis and regulation of

carnobacteriocin production in Carnobacterium piscicola LV17‖,

Gene, 188, 271-277.

Savoia, D., (2012), ―Plant-derived antimicrobial compounds:

alternatives to antibiotics‖, Future Microbiol, 7, 979–990.

Sawa, N., Zendo, T., Kiyofuji, J., Fujita, K., Himeno, K., Nakayama, J.,

Sonomoto, K., (2009), ―Identification and characterization of

Lactocyclicin Q, a novel cyclic bacteriocin produced by Lactococcus

sp. strain QU 12‖, Appl Environ Microbiol, 75, 1552–1558.

Schillinger, U., Geisen, R., Holzapfel, W.H., (1996), ―Potential of

antagonistic microorganisms and bacteriocins for the biological

preservation of foods‖, Trends Food Sci Technol, 7, 158-64.

Schleifer, K..H., Kandler, O. (1972), ―Peptidoglycan types of

bacterial cell walls and their taxonomic implications‖, Bacteriol

Rev, 36, 407-477.

Page 40: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Schobitz, R. P., Borquez, P. A., Costa, M. E., Ciampi, L. R., Brito, C.

S.,(2006), ―Bacteriocin like substance production by

Carnobacterium piscicola in a continuous system with three culture

broths. Study of antagonism against Listeria monocytogenes in

vacuum packaged salmon‖, Braz J Microbiol, 37, 52-57.

Schobitz, R., Zaror, T., Leon, O., Costa, M., (1999), ―A bacteriocin

from Carnobacterium piscicola for the control of Listeria

monocytogenes in vacuum-packaged meat‖, Food Microbiol, 16,

249-255.

Seiler, H., Scherer, S., Wenning, (2013), ―Lysinibacillus meyeri sp.

nov., isolated from a medical practice‖, Int J Syst Evol Micro, 63,

1512–1518.

Shanahan, F., (2010), ―Probiotics in perspective‖, Gastroenterology,

139, 1808–1812.

Sharma, S., Gargand, A.P., Singh, G., (2009), ―Optimization of

fermentation conditions for bacteriocin production by

Lactococccus lactis, CCSULAC1 on modified MRS media‖, Int J

Dairy Science, 5, 1-9.

Sheila M. Morgan, Paula M. O’Connor, Paul D. Cotter, R. Paul R, Hill,

C., (2005), ―Sequential actions of the two component peptides of the

lantibiotic lacticin 3147 explain its antimicrobial activity at

nanomolar concentrations‖, Antimicrob Agents Chemother, 49(7),

2606–2611.

Shelburne, C.E., An, F.Y., Dholpe, V., Ramamoorthy, A., Lopatin,

D.E., Lantz, M.S., (2007), ―The spectrum of antimicrobial activity of

the bacteriocin subtilosin A‖, J Antimicrob Chemother, 59, 297–300.

Page 41: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Siegers, K., Entian, K..D., (1995), ―Genes involved in immunity to

the lantibiotic nisin produced by Lactococctls lactis 6F3‖, Appl

Environ Microbiol, 61, 1082-1089.

Simon, L., Fremaux, C., Cenatiempo, Y., Berjeaud, J. M., (2002),

―Sakacin G, a new type of antilisterial bacteriocin‖, Appl Environ

Microbiol, 68, 6416-6420.

Simsek, O., Con, A.H., Akkoc, N., Saris. P.E., Akcelik, M., (2009),

―Influence of growth conditions on the nisin production of

bioengineered Lactococcus lactis strains‖, J Ind Microbiol

Biotechnol, 36, 481-490.

Sivarooban T., Hettiarachchy, N.S., Johnson, M.G., (2008),

―Transmission electron microscopy study of Listeria monocytogenes

treated with nisin in combination with either grape seed or green

tea seed‖, J Food Prot, 71, 2105–2109.

Sjogren, J., Magnusson, J., Broberg, A., Schnürer, J., Kenne, L.,

(2003), ―Antifungal 3- hydroxy fatty acids from Lactobacillus

plantarum MiLAB 14”, Appl Environ Microbiol, 69, 7554-7557.

Smibert, R., (1994), Phenotypic characterization. In: Gerhardt, P.,

Murray, R.G.E., Wood, W.A., Krieg, N.R. (eds) ―Methods for general

and molecular bacteriology‖, American Society for Microbiology,

607–654.

Smith, K., Martin, L., Rinaldi, A., Rajendran, R., Ramage, G., Walker,

D., (2012), ―Activity of pyocin S2 against Pseudomonas aeruginosa

biofilms‖, Antimicrob Agents Chemother , 56, 1599–1601.

Sosunov, V., Mischenko, V., Eruslanov, B., Svetoch, E., Shakina, Y.,

Stern, N., et al., (2007), ―Antimycobacterial activity of bacteriocins

and their complexes with liposomes‖, J Antimicrob Chemother, 59,

919–925.

Page 42: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Sparo, M.D., Castro, M.S., Andino, P.J., Lavigne, M.V., Ceriani, C.,

Guti_errez, G.L., Fernandez, M.M., De Marzi, M.C., et al., (2006),

―Partial characterization of enterocin MR99 from a corn silage

isolate of Enterococcus faecalis‖, J Appl Microbiol , 100, 123–134.

Stanley, O.S., Morita, R.Y., (1968), ―Salinity Effect on the Maximal

Growth Temperature of Some Bacteria Isolated from Marine

Environments‖, J Bacteriol, 95, 169-173.

Steiner, I., Errhalt, P., Kubesch, K., Hubner, M., Holy, M., Bauer, M.,

Muller, M., Hinterberger, S., Widmann, R., Mascher, D., Freissmuth,

M., Kneussl, M., (2008), ―Pulmonary pharmacokinetics and safety

of nebulized duramycin in healthy male volunteers‖, Naunyn-

Schmiedeberg‖, Arch Pharmacol, 378, 323–333.

Stevens, K. A., Sheldon, B. W., Klapes, N. A. Klaenhammer, T. R.,

(1991), ―Nisin treatment for inactivation of Salmonella species and

other Gram negative bacteria‖, Appl Environ Microbiol, 57, 3613-

3615.

Strom K., Schnu¨rer J., Melin P. (2005), ―Co-cultivation of antifungal

Lactobacilus plantarum MiLAB 393 and Aspergilus nidulans,

evaluation of effects on fungal growth and protein expression‖,

FEMS Microbiol Lett, 246, 19–124.

Sutyak, K.E., Anderson, R.A., Dover, S.E., Feathergill, K.A.,

Aroutcheva, A.A., Faro, .S, Chikindas, M.L., (2008), ―Spermicidal

activity of the safe natural antimicrobial peptide subtilosin‖, Infect

Dis Obstet Gynecol. doi:10.1155/2008/540758.

Sutyak, K.E., Wirawan, R.E., Aroutcheva, A.A., Chikindas, M.L.,

(2008), ―Isolation of the Bacillus subtilis antimicrobial peptide

subtilosin from the dairy product-derived Bacillus

amyloliquefaciens‖, J Appl Microbiol, 104, 1067–1074.

Page 43: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Svetoch, E., Eruslanov, B., Kovalev, Y., Mitsevich, E., Mitsevich, I.,

Levchuk, V., Fursova, N., Perelygin, V., Stepanshin, Y., Teymurasov,

M., Seal, B., Stern, N., (2009), ―Antimicrobial activities of

bacteriocins E 50–52 and B 602 against antibiotic-resistant strains

involved in nosocomial infections‖, Probiotics Antimicrob Proteins,

1, 136–142.

Svetoch, E.A., Eruslanov, B.V., Perelygin, V.V., Mitsevich, E.V.,

Mitsevich, I.P., Borzenkov, V.N., Levchuk, V.P., Svetoch, O.E.,

Kovalev, Y.N., Stepanshin, Y.G., Siragusa, G.R., Seal, B.S., Stern,

N.J., (2008), ―Diverse antimicrobial killing by Enterococcus faecium

E 50–52 bacteriocin‖, J Agric Food Chem, 56, 1942–1948.

Svetoslav D. Todorov, S.D., Dicks, L.M.T.,(2004), ―Influence of

growth conditions on the production of a bacteriocin by

Lactococcus lactis subsp. lactis ST34BR, a strain isolated from

barley beer‖, J Basic Microbiol, 44, 305–316.

Szabo, E.A., Cahill, M.E., (1999), ―Nisin and ALTA 2341 inhibit the

growth of Listeria monocytogenes on smoked salmon packaged

under vacuum or 100% CO2‖, Lett Appl Microbiol, 28, 373-377.

Szkaradkiewicz, A.K., T.M. Karpinski, (2013), ―Probiotics and

probiotics‖, J Biol Earth Sci, 3, 42–47.

Tagg, J.R., (2004), ―Prevention of streptococcal pharyngitis by anti-

Streptococcus pyogenes bacteriocin-like inhibitory substances

(BLIS) produced by Streptococcus salivarius‖, Indian J Med Res,

119, 13–16.

Tagg., J.R., McGiven, A.R., (1971), ―Assay system for bacteriocins‖,

Appl. Microbiol , 21, 943-947.

Tahiri, I., Desbiens, M., Kheadr, E., Lacroix, C., Fliss, I., (2009),

―Comparison of different application strategies of divergicin M35

Page 44: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

for inactivation of Listeria monocytogenes in cold-smoked wild

salmon‖, Food microbiol, 26, 783-793.

Tam, J.P., Lu, Y., Yang, J., (2002), ―Antimicrobial dendrimeric

peptides‖, Eur J Biochem, 269, 923–32.

Tannock, G.W., Tilsala-Timisjarvi A., Rodtong S., Ng J., Munro K.

and Alatossava T, (1999), Appl Environ Microbiol, 65, 4264–4267.

Terzaghi B. E., Sandine, W. E., (19975), ―Improved Medium for

Lactic Streptococci and Their Bacteriophages‖, Appl Microbiol, 29,

6,807-813

Thangamani, A., Thangamani, R., Nagarajan, K., Paramasamy, G.,

(2009), ―Influence of medium components and fermentation

conditions on the production of bacteriocin(s) by Bacillus

licheniformis AnBa9‖, Biores Technol, 100, 872–877.

Thompson, J.D., Gibson, T. J., Plewniak, F., Jeanmougin, F., Higgins,

D.G., (1997), ―The CLUSTAL-X windows interface: flexible

strategies for multiple sequence alignment aided by quality analysis

tools‖, Nucleic Acids Res, 1997, 25, 4876-82.

Tindall, B., Sikorski, J., Smibert, R., Krieg, N., (2007), ―Phenotypic

characterization and the principles of comparative systematic‖ In:

Reddy C.A., Beveridge, T.J., Breznak, J.A., Marzluf, G., Schmidt,

T.M., Snyder, L.R., Methods for general and molecular

microbiology (3rd edn), ASM Press, Washington, pp 330–393.

Todorov S.D., Dicks, L.M.T., (2004), ―Effect of medium components

on bacteriocin production by Lactobacillus pentosus ST 151 BR, a

strain isolated from beer produced by fermentation of maize,

barley and soy flour‖, World J Microbiol Biotechnol , 20, 643-650.

Todorov, S, LeBlanc, J, Franco, B. (2012). ―Evaluation of the

probiotic potential and effect of encapsulation on survival for

Page 45: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Lactobacillus plantarum ST16Pa isolated from papaya‖, World J

Microbiol Biotechnol, 28, 973–84.

Todorov, S. D., Dicks, L. M. T. (2005), ―Lactobacillus plantarum

isolated from molasses produces bacteriocins active against Gram

negative bacteria‖, Enzyme Microb Tech, 36, 318-326.

Todorov, S. D., Dicks, L. M. T., (2005), ―Effect of growth medium

on bacteriocin production by Lactobacillus plantarum ST194BZ, a

strain isolated from Boza‖, Food Technol Biotechnol, 43, 165–173.

Todorov, S., Dicks, L.,(2006), ―Screening for bacteriocin-producing

lactic acid bacteria from boza, a traditional cereal beverage from

Bulgaria, Comparison of the bacteriocins‖, Proc Biochem, 41, 11-9.

Todorov, S., Gotcheva, B., Dousset, X., Onno, B., Ivanova, I., (2000),

―Influence of growth medium on bacteriocin production in

Lactobacillus plantarum ST31‖, Biotechnol Biotechnol Equip, 14,

50–55.

Todorov, S.D. and Dicks, L.M.T., (2006), ―Effect of medium

components on bacteriocin production by Lactobacillus plantarum

strains ST23LD and ST341LD, isolated from spoiled olive brine‖,

Microbiol Res, 161, 102-108.

Todorov, S.D., (2008), ―Bacteriocin production by Lactobacillus

plantarum AMA-K isolated from Amasi, a Zimbabwean fermented

milk product and study of adsorption of bacteriocin AMA-K to

Listeria spp‖, Braz J Microbiol, 38, 178-187.

Todorov, S.D., Dicks, L.M., (2004), ―Screening of lactic-acid

bacteria from South African barley beer for the production of

bacteriocin-like‖, Folia Microbiol (Praha), 49, 406-10

Toma´s, ,M.S.J.,Wiese, E.B.B., A.A.P. de Ruiz, A.A.P.H., Nader-

Macı´as ,M.E., (2002), ―Influence of pH, temperature and culture

Page 46: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

media on the growth and bacteriocin production by vaginal

Lactobacillus salivarius CRL 1328‖, J Appl Microbiol, 93, 714–724.

Torodov, S. D., Dicks, L. M. T. (2005). ―Lactobacillus plantarum

isolated from molasses produces bacteriocins active against gram

negative bacteria‖, Enzyme Microb Tech, 36, 318-326

Torres, N.I., Noll, K.S., Xu, S., Li, J., Huang, Q., Sinko, P.J.,

Wachsman, M.B., Chikindas, M.L., (2013), ―Safety, formulation, and

in vitro antiviral activity of the antimicrobial peptide subtilosin

against herpes simplex virus type Probiotics Antimicrob‖,

Proteins, 5, 26-35.

Tramer, J., Fowler. J. J., (1964), ―Estimation of nisin in foods‖, J Sci

Food Agriculture, 15, 522-528.

Tsironi, T.N., Taoukis, P.S., (2010), ―Modeling microbial spoilage

and quality of gilthead seabream fillets: combined effect of osmotic

pretreatment, modified atmosphere packaging, and nisin on shelf

life‖, J Food Sci, 75, 243-251.

Valli, S., Sugasini, S., Aysha, O.S., Nirmala, P., Kumar, V.P., Reena,

A., (2012), ―Antimicrobial potential of Actinomycetes species

isolated from marine environment‖, Asian Pacific J Trop Biomed,

9, 416-473.

Van Belkum, M.J., Worobo, R.W., Stiles, M.E., (1997), ―Double-

glycine-type leader peptides direct secretion of bacteriocins by

ABC transporters: colicin V secretion in Lactococcus lactis‖, Mol

Microbiol , 23, 1293–301.

Van Heel, A.J., Montalban-Lopez, M., Kuipers, O.P., (2011),

―Evaluating the feasibility of lantibiotics as an alternative therapy

against bacterial infections in humans‖, Exp Opin Drug Metabol

Toxicol, 7, 675–680.

Page 47: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Van Staden, A.D., Brand, A.M., Dicks, L.M.T., (2012), ―Nisin F-

loaded brushite bone cement prevented the growth of

Staphylococcus aureus in vivo‖, J Appl Microbiol, 112, 831-40.

Van Staden, D.A., Brand, A.M., Endo, A., Dicks, L.M.T., (2011),

―Nisin F, Intraperitoneally injected, may have a stabilizing effect

on the bacterial population in the gastro-intestinal tract, as

determined in a preliminary study with mice as model‖, Lett Appl

Microbiol , 53, 198–201.

Varella, Coelho, M.L., Santos Nascimento, J.D., Fagundes, P.C.,

Madureira, D.J., Oliveira, S.S.D., Vasconcelos de Paiva Brito, M.A.,

Freire Bastos, M.D.C.D., (2007), ―Activity of Staphylococcal

bacteriocins against Staphylococcus aureus and Streptococcus

agalactiae involved in bovine mastitis‖, Res Microbiol, 158, 625–

630.

Vaughan, E. E., Daly, C., Fitzgerald, G. F., (1992), ―Identification

and characterization of helveticin V- 1829, a bacteriocin produced

by Lactobacillus helveticus 1829‖, J Appl Bacteriol, 73, 299-308.

Venema, K., Chikindas, M.L., Seegers, J.F.M.L., Haandrikman, A.J.,

Leenhouts K.J., Venema, G., Kok, J., (1997), ―Rapid and efficient

purification methods for small, hydrophobic, cationic bacteriocins:

purification of lactococcin B and pediocin PA-1‖, Appl Environ

Microbiol, 63, 305–309.

Verellen, T.L.J., Bruggenan, G., van Reenen, C.A., Dicks., L.M.T.,

Vandamme, E.J.,(1998), ―Fermentation optimization of plataricin

423, a bacteriocin produced by Lactobacillus plantarum 423, J

Ferment Bioeng‖, 86,174-179.

Vignolo, G.M., Kairuz, M.N., Ruiz-Holgado, A.A.P., Oliver, G.,

(1995), ―Influence of growth conditions on the production of

Page 48: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

lactocin 705, a bacteriocin produced by Lactobacillus casei CRL

705”, J Appl Bacteriol 78, 5-10.

Voulgari, K., Hatzikamari, M., Delepoglou, A., Georgakopoulos, P.,

Litopoulou-Tzanetaki, E., Tzanetakis, N., (2010), ―Antifungal activity

of non-starter lactic acid bacteria isolates from dairy products‖,

Food Control , 21, 136–142.

Wang, H., Yan, Y., Wang, J., Zhang, H., Qi, W., (2012), ―Production

and Characterization of Antifungal Compounds Produced by

Lactobacillus plantarum IMAU10014‖, PLoS ONE, 7, 29452.

Wang, H.K., Yan, H, Shi, J., Zhang, H.P., Qi, W., (2011), ―Activity

against plant pathogenic fungi of Lactobacillus plantarum

IMAU10014 isolated from Xinjiang koumiss in China‖, Ann

Microbiol, 61, 879-885.

Wang, J., Fan, Y., Yao, Z., (2010), ―Isolation of a Lysinibacillus

fusiformis strain with tetrodotoxin-producing ability from puffer

fish Fugu obscurus and the characterization of this strain‖,

Toxicon, 56, 640-643.

White, A. R., (2011), ―Effective antibacterials: at what cost? The

economics of antibacterial resistance and its control‖, J Antimicrob

Chemother, 66, 1948–1953.

Wirawan, R.E., Klesse, N.A., Jack, R.W., Tagg, J.R., (2006),

―Molecular and genetic characterization of a novel nisin variant

produced by Streptococcus uberis‖, Appl Environ Microbiol, 72,

1148–1156.

Wirawan, R.E., Swanson, K.M., Kleffmann, T., Jack, R.W., Tagg, J.R.,

(2007), ―Uberolysin: a novel cyclic bacteriocin produced by

Streptococcus uberis‖, Microbiol, 153, 1619–1630.

Page 49: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Worobo, R.W., VanBelkum, M.J., Sailer, M., Roy, K.L., Vederas, J.C.,

Stiles, M.E., (1995), ―A signal peptide secretion-dependent

bacteriocin from Carnobacterium divergens‖, J Bacteriol, 177, 3143-

3149.

Wu, S., Jia, S., Sun, D., Chen, M., Chen, X., Zhong, J., Huan, L.,

(2005), ―Purification and characterization of two novel

antimicrobial peptides subpeptin JM4-A and subpeptin JM4-B

produced by Bacillus subtilis JM4‖, Curr Microbiol, 51,292–296.

Yan, L.Z., Gibbs, A.C., Stiles, M.E., Wishart, D.S., Vederas, J.C.,

(2000), ―Analogues of bacteriocins: antimicrobial specificity and

interactions of leucocin a with its enantiomer, carnobacteriocin B2,

and truncated derivatives‖, J Med Chem, 43, 4579–4581.

Yang, L. L., Huang, Y., Liu, J., Ma, L., Mo, M. H., Li, W.J., Yang, F.

X., (2012), ―Lysinibacillus mangiferahumi sp. nov., a new bacterium

producing nematicidal volatiles‖, Antonie van Leeuwenhoek., 102,

53–59.

Yang, R., Johnson, M.C., Ray, B., (1992), ―Novel method to extract

large amounts of bacteriocins from lactic acid bacteria‖, Appl

Environ Microbiol, 58, 3355-3359.

Yashushi, K., Tadao S, Uemura, J., Itoh, T., (1997), ―Rapid detection

method for bacteriocin and distribution of bacteriocin producing

strains in Lactobacillus acidiphillus group lactic acid bacteria,

isolated from human feces‖, Basic Bitech Biochem, 61, 179-182.

Yoganand, S., Bhaw-Luximon, A., Jhurry, D., Puchooa, D., (2012),

―Isolation of lactic acid bacteria from sugar cane juice and

production of lactic acid from selected improved strains‖, Adv

Biosci Biotechnol, 3, 398-407.

Page 50: Bibliography - Shodhgangashodhganga.inflibnet.ac.in/bitstream/10603/67168/1/bibliography.pdfBibliography exposed to enterocin AS-48 in planktonic and sessile states‖, Int J Food

Bibliography

Zara, M.L., Belc, N., Bahrim, G., Vasile, A., (2003), ―The study of

antifungal action expressed by some bacterial selected strains‖,

Food Technol, 6, 80–84.

Zendo, T., Nakayama, J., Fujita, K., Sonomoto, K., (2008),

―Bacteriocin detection by liquid chromatography/mass

spectrometry for rapid identification‖, J Appl Microbiol, 144, 499-

507.

Zhang, H., Liu, L., Hao, Y., Zhong, S., Liu, H., Han, T., Xie, Y.,

(2013), ―Isolation and partial characterization of a bacteriocin

produced by Lactobacillus plantarum BM-1 isolated from a

traditionally fermented Chinese meat product‖, Microbiol

Immunol, 57, 746-55.

Zhang, J., Zhang, Y., Shan-na, Liu., Ye Han., Zhi-jiang, Z., (2012),

―Modelling growth and bacteriocin production by Pediococcus

acidilactici PA003 as a function of temperature and pH Value‖,

Appl Biochem Biotechnol, 166, 1388–1400.

Zhu, W.M., Liu, W., Wu, D.Q., (2000), ―Isolation and

characterization of a new bacteriocin from Lactobacillus gasseri

KT7”, J Appl Microbiol, 88, 877-886.

Zouhir, A., Hammami, R., Fliss., Hamida, J.B., (2010), ―A new

structure-based classification of Gram-positive bacteriocins‖,

Protein J, 29, 6, 432-439.

Zuckerman, H. and Ben Avraham, R., (2002), ―Control of growth of

L-monocytogenes in fresh salmon using microgard (TM) and nisin‖,

Lebensmittel-Wissenschaft Und-Technologie‖, Food Sci Tech, 35, 6,

543-548.