Journal of Animal and Veterinary Advances

Year: 2010
Volume: 9
Issue: 16
Page No. 2154 - 2158

Isolation, Phenotypic and Molecular Identification of Lactococcus lactis Isolates from Traditionally Produced Village Cheeses

Authors : Sadik Buyukyoruk, Recep Cibik, Figen Cetinkaya, Gul Ece Soyutemiz, Ergun Omer Goksoy and Sukru Kirkan

References

Albenzino, M., M.R. Corbo, S.U. Rehman, P.F. Fox and M. de Angelis et al., 2001. Microbiological and biochemical characteristics of Cane Strato Pugliese cheese made from raw milk, pasteurized milk or by heating the curd in hot whey. Int. J. Food. Microbiol., 67: 35-48.
CrossRef  |  

Basaran, P., N. Basaran and I. Cakir, 2001. Molecular differentiation of Lactococcus lactis subspecies lactis and cremoris strains by ribotyping and site-specific PCR. Curr. Microbiol., 42: 45-48.
CrossRef  |  

Beimfohr, C., W. Ludwig and K.H. Schleifer, 1997. Rapid genotypic differentiation of Lactococcus lactis subspecies and biovar. Syst. Applied Microbiol., 20: 216-221.
Direct Link  |  

Beuvier, E., K. Berthaud, S. Cegarra, A. Dasen, S. Pochet, S.O. Buchin and G. Duboz, 1997. Ripening and quality of Swiss-type cheese made from raw, pasteurized or microfiltered milk. Int. Dairy J., 7: 311-323.
CrossRef  |  

Bulut, C., H. Gunes, B. Okuklu, S. Harsa, S. Kilic, H.S. Coban and A.F. Yenidunya, 2005. Homofermentative lactic acid bacteria of a traditional cheese, Comlek peyniri from Cappadocia region. J. Dairy Res., 72: 19-24.
CrossRef  |  Direct Link  |  

Cho, S.L., S.W. Nam, J.H. Yoon, J.S. Lee, A. Sukhoom and W. Kim, 2008. Lactococcus chungangensis sp. nov., a lactic acid bacterium isolated from activated sludge foam. Int. J. Syst. Evol. Microbiol., 58: 1844-1849.
CrossRef  |  

Cogan, T.M. and C. Hill, 1993. Cheese Starter Cultures. In: Cheese: Chemistry, Physics and Microbiology, Fox, P.F. (Ed.). Chapman and Hall Publishers, London, England, pp: 193-255.

Corroler, D., I. Mangin, N. Desmasures and M. Gueguen, 1998. An ecological study of lactococci isolated from raw milk in the camembert cheese registered designation of origin area. Applied Environ. Microbiol., 64: 4729-4735.
Direct Link  |  

Deasy, B.M., M.C. Rea, G.F. Fitzgerald, T.M. Cogan and T.P. Beresford, 2000. A rapid PCR based method to distinguish between Lactococcus and Enterococcus. Syst. Applied Microbiol., 23: 510-522.
Direct Link  |  

Demarigny, Y., E. Beuvier, S. Buchin, S. Pochet and R. Grappin, 1997. Influence of raw milk microflora on the characteristics of Swiss-type cheeses: II. Biochemical and sensory characteristics. Lait, 77: 151-167.
Direct Link  |  

Fortina, M.G., G. Ricci, A. Acquati, G. Zeppa, A. Gandini and P.L. Manachini, 2003. Genetic characterisation of some lactic acid bacteria occurring in an artisanal protected denomination origin (PDO) Italian cheese, the Toma piemontese. Food Microbiol., 20: 397-404.
CrossRef  |  

Garde, S., M. Babin, P. Gaya, M. Nunez and M. Medina, 1999. PCR amplification of the gene acmA differentiates Lactococcus lactis subsp. lactis and Lactococcus lactis subsp. cremoris. Applied Environ. Microbiol., 65: 5151-5153.
Direct Link  |  

Gumussoy, G.F. and Z. Gonulalan, 2005. Studies on the presence of Enterohemorrhagic Escherichia coli O157:H7 strain in raw cheese sold in public open markets in Kayseri province. J. Health Sci., 14: 13-19.
Direct Link  |  

Klijn, N., A.H. Weerkamp and W.M. de Vos, 1995. Detection and characterization of lactose-utilizing Lactococcus spp. in natural ecosystems. Applied Environ. Microbiol., 61: 788-792.
Direct Link  |  

Little, C.L., J.R. Rhoades, S.K. Sagoo, J. Harris and M. Greenwood et al., 2008. Microbiological quality of retail cheeses made from raw, thermized or pasteurized milk in the UK. Food Microbiol., 25: 304-312.
PubMed  |  Direct Link  |  

Mangin, I., D. Corroler, A. Reinhardt and M. Gueguen, 1999. Genetic diversity among dairy lactococcal strains investigated by polymerase chain reaction with three arbitrary primers. J. Applied Microbiol., 86: 514-520.
PubMed  |  

Moreno, M.R.F., P. Sarantinopoulos, E. Tsakalidou and L. de Vuyst, 2006. The role and application of Enterococci in food and health. Int. J. Food Microbiol., 106: 1-24.
CrossRef  |  Direct Link  |  

Nomura, M., M. Kobayashi, T. Narita, H. Kimoto-Nira and T. Okamoto, 2006. Phenotypic and molecular characterization of Lactococcus lactis from milk and plants. Applied Environ. Microbiol., 101: 396-405.
PubMed  |  

Ouzari, H., A. Hassen, A. Najjari, B. Ettoumi and D. Daffonchio et al., 2006. A novel phenotype based on esterase electrophoretic polymorphism for the differentiation of Lactococcus lactis ssp. lactis and cremoris. Lett. Applied Microbiol., 43: 351-359.
PubMed  |  

Pu, Z.Y., M. Dobos, G.K.Y. Limsowtin and I.B. Powell, 2002. Integrated polymerase chain reaction�based procedures for the detection and identification of species and subspecies of the Gram�positive bacterial genus Lactococcus. J. Applied Microbiol., 93: 353-361.
PubMed  |  

Salama, M.S., T. Musafijajeknic, W.E. Sandine and S.C. Giovannoni, 1995. An ecological study of lactic acid bacteria: Isolation of new strains of Lactococcus including Lactococcus lactis subspecies cremoris. J. Dairy Sci., 78: 1004-1017.
Direct Link  |  

Salama, M.S., W. Sandine and S.J. Giovannoni, 1993. Isolation of Lactococcus lactis subsp cremoris from nature by colony hybridization with rRNA probes. Applied Environ. Microbiol., 59: 3941-3945.
Direct Link  |  

Schleifer, K.H., J. Kraus, C. Dvorak, R.K. Balz, M.D. Collins and W. Fischer, 1985. Transfer of Streptococcus lactis and related Streptococci to the genus Lactococcus gen. nov. Syst. Applied Microbiol., 6: 183-195.
Direct Link  |  

Ward, L.J.H., J.C.S. Brown and G.P. Davey, 1998. Two methods for the genetic differentiation of Lactococcus lactis ssp. lactis and cremoris based on differences in the 16S rRNA gene sequence. FEMS Microbiol. Lett., 166: 15-20.
CrossRef  |  Direct Link  |  

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