Xylan degradation, a metabolic property shared by rumen and human colonic Bacteroidetes
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Open Access
- 18 November 2010
- journal article
- review article
- Published by Wiley in Molecular Microbiology
- Vol. 79 (2), 292-304
- https://doi.org/10.1111/j.1365-2958.2010.07473.x
Abstract
Microbial inhabitants of the bovine rumen fulfil the majority of the normal caloric requirements of the animal by fermenting lignocellulosic plant polysaccharides and releasing short chain fatty acids that are then metabolized by the host. This process also occurs within the human colon, although the fermentation products contribute less to the overall energy requirements of the host. Mounting evidence, however, indicates that the community structure of the distal gut microbiota is a critical factor that influences the inflammatory potential of the immune system thereby impacting the progression of inflammatory bowel diseases. Non‐digestible dietary fibre derived from plant material is highly enriched in the lignocellulosic polysaccharides, cellulose and xylan. Members of the Bacteroidetes constitute a dominant phylum in both the human colonic microbiome and the rumen microbial ecosystem. In the current article, we review recent insights into the molecular mechanisms for xylan degradation by rumen and human commensal members of the Bacteroidetes phylum, and place this information in the context of the physiological and metabolic processes that occur within these complex microbial environments.Keywords
This publication has 73 references indexed in Scilit:
- Transcriptomic Analyses of Xylan Degradation by Prevotella bryantii and Insights into Energy Acquisition by Xylanolytic Bacteroidetes*Journal of Biological Chemistry, 2010
- Specificity of Polysaccharide Use in Intestinal Bacteroides Species Determines Diet-Induced Microbiota AlterationsCell, 2010
- Complex Glycan Catabolism by the Human Gut Microbiota: The Bacteroidetes Sus-like ParadigmJournal of Biological Chemistry, 2009
- Coordinate Regulation of Glycan Degradation and Polysaccharide Capsule Biosynthesis by a Prominent Human Gut SymbiontJournal of Biological Chemistry, 2009
- Mucosal Glycan Foraging Enhances Fitness and Transmission of a Saccharolytic Human Gut Bacterial SymbiontCell Host & Microbe, 2008
- The Carbohydrate-Active EnZymes database (CAZy): an expert resource for GlycogenomicsNucleic Acids Research, 2008
- The Human Microbiome ProjectNature, 2007
- Locating proteins in the cell using TargetP, SignalP and related toolsNature Protocols, 2007
- CDD: a conserved domain database for interactive domain family analysisNucleic Acids Research, 2006
- Prediction of lipoprotein signal peptides in Gram‐negative bacteriaProtein Science, 2003