Literature DB >> 20348258

Genome sequence of hybrid Vibrio cholerae O1 MJ-1236, B-33, and CIRS101 and comparative genomics with V. cholerae.

Christopher J Grim1, Nur A Hasan, Elisa Taviani, Bradd Haley, Jongsik Chun, Thomas S Brettin, David C Bruce, J Chris Detter, Cliff S Han, Olga Chertkov, Jean Challacombe, Anwar Huq, G Balakrish Nair, Rita R Colwell.   

Abstract

The genomes of Vibrio cholerae O1 Matlab variant MJ-1236, Mozambique O1 El Tor variant B33, and altered O1 El Tor CIRS101 were sequenced. All three strains were found to belong to the phylocore group 1 clade of V. cholerae, which includes the 7th-pandemic O1 El Tor and serogroup O139 isolates, despite displaying certain characteristics of the classical biotype. All three strains were found to harbor a hybrid variant of CTXPhi and an integrative conjugative element (ICE), leading to their establishment as successful clinical clones and the displacement of prototypical O1 El Tor. The absence of strain- and group-specific genomic islands, some of which appear to be prophages and phage-like elements, seems to be the most likely factor in the recent establishment of dominance of V. cholerae CIRS101 over the other two hybrid strains.

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Year:  2010        PMID: 20348258      PMCID: PMC2897672          DOI: 10.1128/JB.00040-10

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  29 in total

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Authors:  G Balakrish Nair; Shah M Faruque; N A Bhuiyan; M Kamruzzaman; A K Siddique; David A Sack
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Authors:  A K Siddique; G B Nair; M Alam; D A Sack; A Huq; A Nizam; I M Longini; F Qadri; S M Faruque; R R Colwell; S Ahmed; A Iqbal; N A Bhuiyan; R B Sack
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  49 in total

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8.  Response of Vibrio cholerae to the Catecholamine Hormones Epinephrine and Norepinephrine.

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Review 9.  Genomic science in understanding cholera outbreaks and evolution of Vibrio cholerae as a human pathogen.

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10.  A globally distributed mobile genetic element inhibits natural transformation of Vibrio cholerae.

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