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      Scanning transmission X-ray, laser scanning, and transmission electron microscopy mapping of the exopolymeric matrix of microbial biofilms.

      Applied and Environmental Microbiology
      Bacteria, ultrastructure, Biofilms, Bioreactors, Canavalia, Image Processing, Computer-Assisted, Microscopy, Confocal, Microscopy, Electron, methods, Plant Development, Plants, classification, Sambucus, Ulex

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          Abstract

          Confocal laser scanning microscopy (CLSM), transmission electron microscopy (TEM), and soft X-ray scanning transmission X-ray microscopy (STXM) were used to map the distribution of macromolecular subcomponents (e.g., polysaccharides, proteins, lipids, and nucleic acids) of biofilm cells and matrix. The biofilms were developed from river water supplemented with methanol, and although they comprised a complex microbial community, the biofilms were dominated by heterotrophic bacteria. TEM provided the highest-resolution structural imaging, CLSM provided detailed compositional information when used in conjunction with molecular probes, and STXM provided compositional mapping of macromolecule distributions without the addition of probes. By examining exactly the same region of a sample with combinations of these techniques (STXM with CLSM and STXM with TEM), we demonstrate that this combination of multimicroscopy analysis can be used to create a detailed correlative map of biofilm structure and composition. We are using these correlative techniques to improve our understanding of the biochemical basis for biofilm organization and to assist studies intended to investigate and optimize biofilms for environmental remediation applications.

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          Author and article information

          Journal
          12957944
          194976
          10.1128/AEM.69.9.5543-5554.2003

          Chemistry
          Bacteria,ultrastructure,Biofilms,Bioreactors,Canavalia,Image Processing, Computer-Assisted,Microscopy, Confocal,Microscopy, Electron,methods,Plant Development,Plants,classification,Sambucus,Ulex

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