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<span style="color: DarkRed">< | <u>[http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1003421 Last paper]:</u><br> | ||
<span style="color: DarkRed">''RpoS plays a central role in the SOS induction''<br> | |||
''by sub-lethal aminoglycoside concentrations in Vibrio cholerae.''</span><br> | |||
''PLoS Genetics (2013)'' <br> | |||
9(4): e1003421<br> | |||
[http://www.pasteur.fr/ip/easysite/pasteur/en '''''The Pasteur Institute Web site'''''] | |||
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Revision as of 06:31, 25 April 2013
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padding: 2px; background-color: #200B80; width: 764px; font-size: 14px; font-family: trebuchet ms; text-align: center; font-weight:bold; }
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- map{
margin: -240px 0px 0px 50%; } .selflink{ color: #ffffff; font-weight: normal; } </style> <meta name="keywords" content="BGP, lab, laboratory, BGP lab, Bacterial Genome Plasticity, Super, Integrons, superintegron, bacterial, genome, plasticity, gene, institut Pasteur, institute, vibrio, cholerae, gene cassette, antibiotics, resistance" /> </html>
Welcome to the Bacterial Genome Plasticity (BGP) lab web page.
Our work deals with some aspects of bacteria's impressive capacities to acquire and exchange genes...
Which enable bacteria to evolve very fast and efficiently !
Last paper:
RpoS plays a central role in the SOS induction
by sub-lethal aminoglycoside concentrations in Vibrio cholerae.
PLoS Genetics (2013)
9(4): e1003421