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Steps in the development of a <i>Vibrio cholerae</i> El Tor biofilm

Molecular Microbiology · 1999 · Vol. 34(3) · pp. 586–595
Paula I. WatnickRoberto Kolter

Abstract

We report that, in a simple, static culture system, wild-type Vibrio cholerae El Tor forms a three-dimensional biofilm with characteristic water channels and pillars of bacteria. Furthermore, we have isolated and characterized transposon insertion mutants of V. cholerae that are defective in biofilm development. The transposons were localized to genes involved in (i) the biosynthesis and secretion of the mannose-sensitive haemagglutinin type IV pilus (MSHA); (ii) the synthesis of exopolysaccharide; and (iii) flagellar motility. The phenotypes of these three groups suggest that the type IV pilus and flagellum accelerate attachment to the abiotic surface, the flagellum mediates spread along the abiotic surface, and exopolysaccharide is involved in the formation of three-dimensional biofilm architecture.

Vibrio bacteria research studiesBacterial biofilms and quorum sensingBacterial Genetics and BiotechnologyVibrio choleraePilusBiologyBiofilmFlagellumMicrobiologyEl TorMutantTransposable elementBacteria

MeSH terms

Bacterial ProteinsDNA Transposable ElementsFlagellaHemagglutininsHumansMovementPolysaccharides, BacterialTime FactorsVibrio choleraePolymerase Chain ReactionMutagenesis, InsertionalBiofilmsMicroscopy, ConfocalFimbriae ProteinsMannose-Binding Lectin

Funding

  • National Institutes of Health
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Steps in the development of a <i>Vibrio cholerae</i> El Tor biofilm · Scinovex