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76
Sørum, H., et T. M. L’Abeé-Lund. 2002. Antibiotic resistance in food-related bacteria-a
result of interfering with the global web of bacterial genetics. International Journal of
Food Microbiology. 78: 43-56.
Stokes, H. W., et R. M. Hall. 1989. A novel family of potentially mobile DNA elements
encoding site-specific gene integration functions: integrons. Mol. Microbiol. 3: 16691683.
Tenover F. C. 2006. Mechanisms of Antimicrobial Resistance in Bacteria. The American
Journal of Medicine. 119: 3-10.
Teuber, M. 2001. Veterinary use and antibiotic resistance. Current Opinion Microbiology.
4: 493-499.
Thomas, C.M, et K. M. Nielsen. 2005. Mechanisms of, and barriers to, horizontal gene
transfer between bacteria. Nat Rev Microbiol. 3: 711-721.
Touati, A., S. Benallaoua, D. Forte, J. Madoux, L. Brasme, et C. de Champs. 2006.
First report of CTX-M-15 and CTX-M-3 beta-lactamases among clinical isolates of
Enterobacteriaceae in Bejaia, Algeria. International Journal of Antimicrobial Agents. 27:
397-402.
Uğur, A., Ö. Ceylan, et B. Aslım. 2012. Characterization of Pseudomonas spp. from
Seawater of the Southwest Coast of Turkey. Journal of Biology and Environmental
Science. 6(16) : 15-23.
Vedel, G. 1997. La lecture interprétative facteur de maitrise de l’antibiogramme. Spectra
Biologie. 16 : 465-478.
Vedel, G. 2005. Simple method to determine β-lactam resistance phenotypes in
Pseudomonas aeruginosa using the disc agar diffusion test. Journal of Antimicrobial
Chemotherapy. 56: 657-664.
Vedel, G., D. Ratovohery, G. Paul, et P. Nevot. 1994. Phenotypes de resistance des
Enterobacteries aux béta-lactamines. Laboratoire jouveimal, eds. Pyramide. Sante Paris :
1-103.
Wang, H. H., M. Manuzon, K. Wan, H. Luo, T. E. Wittum, A. Yousef, et L. O.
Bakaletz. 2006. Food commensal microbes as a potentially important avenue in
transmitting antibiotic resistance genes. FEMS microbial Lett. 254: 226-231.
Watkinson A. J., G. B. Micalizzi, G. M. Graham, J. B. Bates, et S. D. Costanzo. 2007.
Antibiotic-Resistant Escherichia coli in Wastewaters, Surface Waters, and Oysters from
an Urban Riverine System. Applied and Environmental Microbiology. 73 : 5667-5670.
Webber, M. A., et L. J. Piddock. 2003. The importance of efflux pumps in bacterial
antibiotic resistance. Journal of Antimicrobial Chemotherapy. 51: 9-11.
Wise, R. 2002. Antimicrobial resistance: priorities for action. J. Antimicrob. Chemoth. 49:
585-586.
76
Sørum, H., et T. M. L’Abeé-Lund. 2002. Antibiotic resistance in food-related bacteria-a
result of interfering with the global web of bacterial genetics. International Journal of
Food Microbiology. 78: 43-56.
Stokes, H. W., et R. M. Hall. 1989. A novel family of potentially mobile DNA elements
encoding site-specific gene integration functions: integrons. Mol. Microbiol. 3: 16691683.
Tenover F. C. 2006. Mechanisms of Antimicrobial Resistance in Bacteria. The American
Journal of Medicine. 119: 3-10.
Teuber, M. 2001. Veterinary use and antibiotic resistance. Current Opinion Microbiology.
4: 493-499.
Thomas, C.M, et K. M. Nielsen. 2005. Mechanisms of, and barriers to, horizontal gene
transfer between bacteria. Nat Rev Microbiol. 3: 711-721.
Touati, A., S. Benallaoua, D. Forte, J. Madoux, L. Brasme, et C. de Champs. 2006.
First report of CTX-M-15 and CTX-M-3 beta-lactamases among clinical isolates of
Enterobacteriaceae in Bejaia, Algeria. International Journal of Antimicrobial Agents. 27:
397-402.
Uğur, A., Ö. Ceylan, et B. Aslım. 2012. Characterization of Pseudomonas spp. from
Seawater of the Southwest Coast of Turkey. Journal of Biology and Environmental
Science. 6(16) : 15-23.
Vedel, G. 1997. La lecture interprétative facteur de maitrise de l’antibiogramme. Spectra
Biologie. 16 : 465-478.
Vedel, G. 2005. Simple method to determine β-lactam resistance phenotypes in
Pseudomonas aeruginosa using the disc agar diffusion test. Journal of Antimicrobial
Chemotherapy. 56: 657-664.
Vedel, G., D. Ratovohery, G. Paul, et P. Nevot. 1994. Phenotypes de resistance des
Enterobacteries aux béta-lactamines. Laboratoire jouveimal, eds. Pyramide. Sante Paris :
1-103.
Wang, H. H., M. Manuzon, K. Wan, H. Luo, T. E. Wittum, A. Yousef, et L. O.
Bakaletz. 2006. Food commensal microbes as a potentially important avenue in
transmitting antibiotic resistance genes. FEMS microbial Lett. 254: 226-231.
Watkinson A. J., G. B. Micalizzi, G. M. Graham, J. B. Bates, et S. D. Costanzo. 2007.
Antibiotic-Resistant Escherichia coli in Wastewaters, Surface Waters, and Oysters from
an Urban Riverine System. Applied and Environmental Microbiology. 73 : 5667-5670.
Webber, M. A., et L. J. Piddock. 2003. The importance of efflux pumps in bacterial
antibiotic resistance. Journal of Antimicrobial Chemotherapy. 51: 9-11.
Wise, R. 2002. Antimicrobial resistance: priorities for action. J. Antimicrob. Chemoth. 49:
585-586.
