Comparative ICE Genomics: Insights into the Evolution of the SXT/R391 Family of ICEs

Сравнительная геномика интегративных и конъюгативных элементов: представления об эволюции семейства SXT/R391
Derrick E. Fouts, Matthew K. Waldor, Vincent Burrus, Matteo Spagnoletti, Daniela Ceccarelli, M. Colombo, Rachel A. F. Wozniak, Geneviève Garriss, Christine Déry
2009-12-23

SXT/R391 family ICEsantibiotic resistancecomparative genomicsintegrating and conjugative elementsmobile genetic element recombination
Integrating and conjugative elements (ICEs) are one of the three principal types of self-transmissible mobile genetic elements in bacteria. ICEs, like plasmids, transfer via conjugation; but unlike plasmids and similar to many phages, these elements integrate into and replicate along with the host chromosome. Members of the SXT/R391 family of ICEs have been isolated from several species of gram-negative bacteria, including Vibrio cholerae, the cause of cholera, where they have been important vectors for disseminating genes conferring resistance to antibiotics. Here we developed a plasmid-based system to capture and isolate SXT/R391 ICEs for sequencing. Comparative analyses of the genomes of 13 SXT/R391 ICEs derived from diverse hosts and locations revealed that they contain 52 perfectly syntenic and nearly identical core genes that serve as a scaffold capable of mobilizing an array of variable DNA. Furthermore, selection pressure to maintain ICE mobility appears to have restricted insertions of variable DNA into intergenic sites that do not interrupt core functions. The variable genes confer diverse element-specific phenotypes, such as resistance to antibiotics. Functional analysis of a set of deletion mutants revealed that less than half of the conserved core genes are required for ICE mobility; the functions of most of the dispensable core genes are unknown. Several lines of evidence suggest that there has been extensive recombination between SXT/R391 ICEs, resulting in re-assortment of their respective variable gene content. Furthermore, our analyses suggest that there may be a network of phylogenetic relationships among sequences found in all types of mobile genetic elements.
1
A plasmid-based capture system enabled isolation and sequencing of SXT/R391 integrative and conjugative elements (ICEs).
2
Comparative analysis of 13 ICEs from diverse hosts and locations identified 52 perfectly syntenic, nearly identical core genes forming a conserved mobilization scaffold.
3
Extensive recombination among SXT/R391 ICEs appears to reassort variable gene content, and sequence relationships may form a network spanning different mobile genetic element types.
4
Selection for maintaining ICE mobility restricts variable DNA insertions to intergenic regions that avoid disrupting core functions.
5
Variable genes produce diverse element-specific phenotypes, including antibiotic resistance, while fewer than half of conserved core genes are required for ICE mobility.

SXT/R391 family integrating and conjugative elements (ICEs) from diverse bacterial hosts and locations

Comparative genomic organization, core-gene functions, variable gene content, mobility, and evolutionary recombination of SXT/R391 ICEs

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2009-12-23
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Derrick E. Fouts
Matthew K. Waldor
Vincent Burrus
Matteo Spagnoletti
Daniela Ceccarelli
M. Colombo
Rachel A. F. Wozniak
Geneviève Garriss
Christine Déry
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