Acquisition and Evolution of SXT-R391 Integrative Conjugative Elements in the Seventh-Pandemic Vibrio cholerae Lineage
Приобретение и эволюция интегративно-конъюгативных элементов SXT-R391 в линии Vibrio cholerae седьмой пандемии
2014-08-20
SCID: 54.1/jev9fdzr
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SXT-R391 integrative conjugative elementsVibrio choleraehomologous recombinationmultidrug resistanceseventh-pandemic lineage
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Abstract (AI)
UNLABELLED: SXT-R391 Integrative conjugative elements (ICEs) are self-transmissible mobile genetic elements able to confer multidrug resistance and other adaptive features to bacterial hosts, including Vibrio cholerae, the causative agent of cholera. ICEs are arranged in a mosaic genetic structure composed of a conserved backbone interspersed with variable DNA clusters located in conserved hot spots. In this study, we investigated ICE acquisition and subsequent microevolution in pandemic V. cholerae. Ninety-six ICEs were retrieved from publicly available sequence databases from V. cholerae clinical strains and were compared to a set of reference ICEs. Comparative genomics highlighted the existence of five main ICE groups with a distinct genetic makeup, exemplified by ICEVchInd5, ICEVchMoz10, SXT, ICEVchInd6, and ICEVchBan11. ICEVchInd5 (the most frequent element, represented by 70 of 96 elements analyzed) displayed no sequence rearrangements and was characterized by 46 single nucleotide polymorphisms (SNPs). SNP analysis revealed that recent inter-ICE homologous recombination between ICEVchInd5 and other ICEs circulating in gammaproteobacteria generated ICEVchMoz10, ICEVchInd6, and ICEVchBan11. Bayesian phylogenetic analyses indicated that ICEVchInd5 and SXT were independently acquired by the current pandemic V. cholerae O1 and O139 lineages, respectively, within a period of only a few years. IMPORTANCE: SXT-R391 ICEs have been recognized as key vectors of antibiotic resistance in the seventh-pandemic lineage of V. cholerae, which remains a major cause of mortality and morbidity on a global scale. ICEs were acquired only recently in this clade and are acknowledged to be major contributors to horizontal gene transfer and the acquisition of new traits in bacterial species. We have reconstructed the temporal dynamics of SXT-R391 ICE acquisition and spread and have identified subsequent recombination events generating significant diversity in ICEs currently circulating among V. cholerae clinical strains. Our results showed that acquisition of SXT-R391 ICEs provided the V. cholerae seventh-pandemic lineage not only with a multidrug resistance phenotype but also with a powerful molecular tool for rapidly accessing the pan-genome of a large number of gammaproteobacteria.
Key Findings
1
Bayesian phylogenetic analyses showed that ICEVchInd5 and SXT were independently acquired by pandemic V. cholerae O1 and O139 lineages within only a few years.
2
Comparative genomics of 96 V. cholerae ICEs identified five major SXT-R391 groups with distinct mosaic genetic compositions.
3
ICEVchInd5 was the predominant element, comprising 70 of 96 analyzed ICEs, with no detected sequence rearrangements and 46 SNPs.
4
Recent homologous recombination between ICEVchInd5 and other gammaproteobacterial ICEs generated ICEVchMoz10, ICEVchInd6, and ICEVchBan11.
5
The study reconstructs recent ICE acquisition, spread, and recombination as major sources of SXT-R391 diversity and adaptive gene transfer in pandemic V. cholerae.
Research Object
SXT-R391 integrative conjugative elements in the seventh-pandemic Vibrio cholerae lineages
Research Subject
The acquisition, temporal spread, microevolution, and inter-ICE recombination-driven diversification of SXT-R391 elements in pandemic V. cholerae
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2014-08-20
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