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Three-Dimensional Macromolecular Organization of Cryofixed Myxococcus xanthus Biofilms as Revealed by Electron Microscopic Tomography
Author(s) -
Hildur Pálsdóttir,
Jonathan Remis,
Christoph Schaudinn,
Eileen O’Toole,
Renate Lux,
Wenyuan Shi,
Kent McDonald,
J. William Costerton,
Manfred Auer
Publication year - 2009
Publication title -
journal of bacteriology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.652
H-Index - 246
eISSN - 1067-8832
pISSN - 0021-9193
DOI - 10.1128/jb.01333-08
Subject(s) - myxococcus xanthus , biology , biofilm , ultrastructure , biophysics , cytoplasm , microbiology and biotechnology , electron microscope , electron tomography , nucleoid , bacteria , biochemistry , anatomy , scanning transmission electron microscopy , genetics , gene , escherichia coli , physics , optics , mutant
Despite the fact that most bacteria grow in biofilms in natural and pathogenic ecosystems, very little is known about the ultrastructure of their component cells or about the details of their community architecture. We used high-pressure freezing and freeze-substitution to minimize the artifacts of chemical fixation, sample aggregation, and sample extraction. As a further innovation we have, for the first time in biofilm research, used electron tomography and three-dimensional (3D) visualization to better resolve the macromolecular 3D ultrastructure of a biofilm. This combination of superb specimen preparation and greatly improved resolution in thez axis has opened a window in studies ofMyxococcus xanthus cell ultrastructure and biofilm community architecture. New structural information on the chromatin body, cytoplasmic organization, membrane apposition between adjacent cells, and structure and distribution of pili and vesicles in the biofilm matrix is presented.

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