Molecular architecture and assembly principles of Vibrio cholerae biofilms

Veysel Berk;Jiunn C.N. Fong;Graham T. Dempsey;Omer N. Develioglu;小威 庄;Jan Liphardt;Fitnat H. Yildiz;棣文 朱

University of California at Berkeley;University of California at Santa Cruz;Harvard University;Ministry of Health; Turkey;Lawrence Berkeley National Laboratory;United States Department of Energy

发表时间:2012-7-13

期 刊:Science

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=84863730186&partnerID=8YFLogxK

摘要

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.

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 16.615 6.948
2000 13.319 7.023
2001 10.987 6.918
2002 10.814 7.218
2003 11.428 7.423
2004 11.589 7.25
2005 11.09 6.524
2006 10.542 6.094
2007 10.072 5.991
2008 11.277 6.034
2009 11.897 7.044
2010 13.481 7.744
2011 44.7 14.238 8.203
2012 46.3 13.318 8.003
2013 46.9 12.41 7.741
2014 46 12.052 8.017
2015 46.6 12.872 7.571
2016 49.5 13.745 7.671
2017 49.4 14.142 7.409
2018 47.1 13.251 7.584
2019 45.3 13.11 7.535
2020 46.8 12.556 7.789
2021 46.4

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