Parallel independent evolution of pathogenicity within the genus Yersinia
Author(s) -
Sandra Reuter,
Thomas R. Connor,
Lars Barquist,
Danielle Walker,
Theresa Feltwell,
Simon R. Harris,
María Fookes,
Miquette Hall,
Nicola K. Petty,
Thilo M. Fuchs,
Jukka Corander,
Muriel Dufour,
Tamara Ringwood,
Cyril Savin,
Christiane Bouchier,
Liliane Martin,
Minna Miettinen,
Mikhail Shubin,
Julia M. Riehm,
Riikka LaukkanenNinios,
Leila M. Sihvonen,
Anja Siitonen,
Mikael Skurnik,
Juliana Pfrimer Falcão,
Hiroshi Fukushima,
Holger C. Scholz,
Michael B. Prentice,
Brendan W. Wren,
Julian Parkhill,
Élisabeth Carniel,
Mark Achtman,
Alan McNally,
Nicholas R. Thomson
Publication year - 2014
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1317161111
Subject(s) - virulence , biology , yersinia enterocolitica , genetics , yersinia , locus (genetics) , genome , pathogenicity island , plasmid , gene , evolutionary biology , microbiology and biotechnology , bacteria
The genus Yersinia has been used as a model system to study pathogen evolution. Using whole-genome sequencing of all Yersinia species, we delineate the gene complement of the whole genus and define patterns of virulence evolution. Multiple distinct ecological specializations appear to have split pathogenic strains from environmental, nonpathogenic lineages. This split demonstrates that contrary to hypotheses that all pathogenic Yersinia species share a recent common pathogenic ancestor, they have evolved independently but followed parallel evolutionary paths in acquiring the same virulence determinants as well as becoming progressively more limited metabolically. Shared virulence determinants are limited to the virulence plasmid pYV and the attachment invasion locus ail. These acquisitions, together with genomic variations in metabolic pathways, have resulted in the parallel emergence of related pathogens displaying an increasingly specialized lifestyle with a spectrum of virulence potential, an emerging theme in the evolution of other important human pathogens.
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