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Review article: dietary fibre-microbiota interactions

Alimentary Pharmacology & Therapeutics · 2015 · Vol. 42(2) · pp. 158–179
Hannah L. SimpsonBarry J. Campbell

Abstract

Agrarian diets high in fruit/legume fibre are associated with greater microbial diversity and a predominance of Prevotella over Bacteroides. 'Western'-style diets, high in fat/sugar, low in fibre, decrease beneficial Firmicutes that metabolise dietary plant-derived polysaccharides to SCFAs and increase mucosa-associated Proteobacteria (including enteric pathogens). Short-term diets can also have major effects, particularly those exclusively animal-based, and those high-protein, low-fermentable carbohydrate/fibre 'weight-loss' diets, increasing the abundance of Bacteroides and lowering Firmicutes, with long-term adherence to such diets likely increasing risk of colonic disease. Interventions to prevent intestinal inflammation may be achieved with fermentable prebiotic fibres that enhance beneficial Bifidobacteria or with soluble fibres that block bacterial-epithelial adherence (contrabiotics). These mechanisms may explain many of the differences in microbiota associated with long-term ingestion of a diet rich in fruit and vegetable fibre.

MeSH terms

BacillotaFirmicutesGastrointestinal MicrobiomeAnimalsBacteroidesBifidobacteriumDietDietary FiberFeeding BehaviorHumansMaleMetabolome

Funding

  • Falk Foundation
  • Amgen
  • Wellcome Trust
  • Directorate for Biological Sciences
  • Biotechnology and Biological Sciences Research Council
Citations
604
FWCI
28.80
field-weighted impact
References
129
Percentile
100%
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Citations per year
References
Application of metagenomics in the human gut microbiome
World Journal of Gastroenterology · 2015 · 399 citations
Review article: the role of butyrate on colonic function
Alimentary Pharmacology & Therapeutics · 2007 · 2,699 citations
The Placenta Harbors a Unique Microbiome
Science Translational Medicine · 2014 · 2,416 citations
Regulation of Inflammation by Short Chain Fatty Acids
Nutrients · 2011 · 1,658 citations
Towards the human intestinal microbiota phylogenetic core
Environmental Microbiology · 2009 · 888 citations
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