Widespread distribution of prophage-encoded virulence factors in marine Vibrio communities

Daniel Castillo, Kathryn Kauffman, Fatima Hussain, Panos Kalatzis, Nanna Rørbo, Martin F Polz, Mathias Middelboe

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

Prophages are known to encode important virulence factors in the human pathogen Vibrio cholerae. However, little is known about the occurrence and composition of prophage-encoded traits in environmental vibrios. A database of 5,674 prophage-like elements constructed from 1,874 Vibrio genome sequences, covering sixty-four species, revealed that prophage-like elements encoding possible properties such as virulence and antibiotic resistance are widely distributed among environmental vibrios, including strains classified as non-pathogenic. Moreover, we found that 45% of Vibrio species harbored a complete prophage-like element belonging to the Inoviridae family, which encode the zonula occludens toxin (Zot) previously described in the V. cholerae. Interestingly, these zot-encoding prophages were found in a variety of Vibrio strains covering both clinical and marine isolates, including strains from deep sea hydrothermal vents and deep subseafloor sediments. In addition, the observation that a spacer from the CRISPR locus in the marine fish pathogen V. anguillarum strain PF7 had 95% sequence identity with a zot gene from the Inoviridae prophage found in V. anguillarum strain PF4, suggests acquired resistance to inoviruses in this species. Altogether, our results contribute to the understanding of the role of prophages as drivers of evolution and virulence in the marine Vibrio bacteria.

OriginalspracheEnglisch
Aufsatznummer9973
FachzeitschriftScientific Reports
Jahrgang8
Ausgabenummer1
DOIs
PublikationsstatusVeröffentlicht - 2 Juli 2018
Extern publiziertJa

Fördermittel

This work was supported by grants from the Danish Council for Strategic Research (ProAqua project 12-132390) and the Danish Council for Independent Research (DFF – 7014-00080) to MM, and the US National Science Foundation OCE-1435993 to MFP.

ÖFOS 2012

  • 106022 Mikrobiologie

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