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<span style="color: DarkRed"><u>Last Paper:</u></span><br>
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<u>[http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1003421 Last paper]:</u><br>
[http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1002472] <br>
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<span style="color: DarkRed">''RpoS plays a central role in the SOS induction''<br>
''Genome Engineering in Vibrio ''<br>
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''by sub-lethal aminoglycoside concentrations in Vibrio cholerae.''</span><br>
''cholerae: A Feasible Approach''<br>
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''PLoS Genetics (2013)'' <br>
''to Address Biological Issues''<br>
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9(4): e1003421<br>
''PLoS Genetics, <br>
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8(1): e1002472<br>
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[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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Bacterial Genome Plasticity

Home     Research     Publications     Plasmids / Strains     Protocols     Lab Members     Contact     Internal     Links    

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




The Pasteur Institute Web site