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Open AccessJournal ArticleDOI

Quorum‐sensing autoinducer molecules produced by members of a multispecies biofilm promote horizontal gene transfer to Vibrio cholerae

Elena S. Antonova, +1 more
- 01 Sep 2011 - 
- Vol. 322, Iss: 1, pp 68-76
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TLDR
It is demonstrated that comEA transcription and the horizontal acquisition of DNA by V. cholerae are induced in response to purified CAI-1 and AI-2, and also by autoinducers derived from other Vibrios co-cultured with V. Cholerae within a mixed-species biofilm, suggesting that autoinducer communication within a consortium may promote DNA exchange among VibRIos.
Abstract
Vibrio cholerae, the causative agent of cholera and a natural inhabitant of aquatic environments, regulates numerous behaviors using a quorum-sensing (QS) system conserved among many members of the marine genus Vibrio. The Vibrio QS response is mediated by two extracellular autoinducer (AI) molecules: CAI-I, which is produced only by Vibrios, and AI-2, which is produced by many bacteria. In marine biofilms on chitinous surfaces, QS-proficient V. cholerae become naturally competent to take up extracellular DNA. Because the direct role of AIs in this environmental behavior had not been determined, we sought to define the contribution of CAI-1 and AI-2 in controlling transcription of the competence gene, comEA, and in DNA uptake. In this study we demonstrated that comEA transcription and the horizontal acquisition of DNA by V. cholerae are induced in response to purified CAI-1 and AI-2, and also by autoinducers derived from other Vibrios co-cultured with V. cholerae within a mixed-species biofilm. These results suggest that autoinducer communication within a consortium may promote DNA exchange among Vibrios, perhaps contributing to the evolution of these bacterial pathogens.

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Dissertation

Ocean acidification and disease: How will a changing climate impact Vibrio tubiashii growth and pathogenicity to Pacific oyster larvae?

TL;DR: Friedman et al. as discussed by the authors investigated how environmental cues predicted with ocean acidification influence physiological changes and pathogenicity in Vibrio tubiashii (Vt), using laboratory experiments to manipulate temperature and pCO2, examined how these environmental factors influenced pathogen growth.
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Control of Competence in Vibrio fischeri.

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Lichens and biofilms: Common collective growth imparts similar developmental strategies

TL;DR: It is argued here that one can gain insight into the cellular processes and evolutionary origins of lichens by applying knowledge gleaned from studies on microbialBiofilms, with a particular focus on fungal biofilms.
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Dissemination and loss of a biofilm-related genomic island in marine Pseudoalteromonas mediated by integrative and conjugative elements.

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References
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Journal ArticleDOI

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Journal ArticleDOI

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Journal ArticleDOI

Lysogenic conversion by a filamentous phage encoding cholera toxin.

TL;DR: The emergence of toxigenic V. cholerae involves horizontal gene transfer that may depend on in vivo gene expression, and is shown here to be encoded by a filamentous bacteriophage (designated CTXΦ), which is related to coliphage M13.
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