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Molecular architecture and assembly principles of Vibrio cholerae biofilms.


ABSTRACT: In their natural environment, microbes organize into communities held together by an extracellular matrix composed of polysaccharides and proteins. We developed an in vivo labeling strategy to allow the extracellular matrix of developing biofilms to be visualized with conventional and superresolution light microscopy. Vibrio cholerae biofilms displayed three distinct levels of spatial organization: cells, clusters of cells, and collections of clusters. Multiresolution imaging of living V. cholerae biofilms revealed the complementary architectural roles of the four essential matrix constituents: RbmA provided cell-cell adhesion; Bap1 allowed the developing biofilm to adhere to surfaces; and heterogeneous mixtures of Vibrio polysaccharide, RbmC, and Bap1 formed dynamic, flexible, and ordered envelopes that encased the cell clusters.

SUBMITTER: Berk V 

PROVIDER: S-EPMC3513368 | biostudies-literature | 2012 Jul

REPOSITORIES: biostudies-literature

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Molecular architecture and assembly principles of Vibrio cholerae biofilms.

Berk Veysel V   Fong Jiunn C N JC   Dempsey Graham T GT   Develioglu Omer N ON   Zhuang Xiaowei X   Liphardt Jan J   Yildiz Fitnat H FH   Chu Steven S  

Science (New York, N.Y.) 20120701 6091


In their natural environment, microbes organize into communities held together by an extracellular matrix composed of polysaccharides and proteins. We developed an in vivo labeling strategy to allow the extracellular matrix of developing biofilms to be visualized with conventional and superresolution light microscopy. Vibrio cholerae biofilms displayed three distinct levels of spatial organization: cells, clusters of cells, and collections of clusters. Multiresolution imaging of living V. choler  ...[more]

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