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Short-Chain Fatty Acids Modulate Healthy Gut Microbiota Composition and Functional Potential
by
Rodionov, Dmitry A
, Iablokov, Stanislav N
, Chopra Deepak
, Peterson, Christine Tara
, Peterson, Scott N
, Perez, Santiago Josue
in
Abundance
/ Bacteria
/ Community structure
/ Fatty acids
/ Genomes
/ Gut microbiota
/ Intestinal microflora
/ Metabolic flux
/ Metabolism
/ Microbiota
/ Microorganisms
/ Negative feedback
/ Prebiotics
/ Reconstruction
/ Relative abundance
/ rRNA 16S
/ Structure-function relationships
/ Syntrophism
2022
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Short-Chain Fatty Acids Modulate Healthy Gut Microbiota Composition and Functional Potential
by
Rodionov, Dmitry A
, Iablokov, Stanislav N
, Chopra Deepak
, Peterson, Christine Tara
, Peterson, Scott N
, Perez, Santiago Josue
in
Abundance
/ Bacteria
/ Community structure
/ Fatty acids
/ Genomes
/ Gut microbiota
/ Intestinal microflora
/ Metabolic flux
/ Metabolism
/ Microbiota
/ Microorganisms
/ Negative feedback
/ Prebiotics
/ Reconstruction
/ Relative abundance
/ rRNA 16S
/ Structure-function relationships
/ Syntrophism
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Short-Chain Fatty Acids Modulate Healthy Gut Microbiota Composition and Functional Potential
by
Rodionov, Dmitry A
, Iablokov, Stanislav N
, Chopra Deepak
, Peterson, Christine Tara
, Peterson, Scott N
, Perez, Santiago Josue
in
Abundance
/ Bacteria
/ Community structure
/ Fatty acids
/ Genomes
/ Gut microbiota
/ Intestinal microflora
/ Metabolic flux
/ Metabolism
/ Microbiota
/ Microorganisms
/ Negative feedback
/ Prebiotics
/ Reconstruction
/ Relative abundance
/ rRNA 16S
/ Structure-function relationships
/ Syntrophism
2022
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Short-Chain Fatty Acids Modulate Healthy Gut Microbiota Composition and Functional Potential
Journal Article
Short-Chain Fatty Acids Modulate Healthy Gut Microbiota Composition and Functional Potential
2022
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Overview
Many studies have focused on the metabolic capacity of human gut microbiota to produce short-chain fatty acids and subsequent effects on host physiology. Given scarce data on how SCFAs produced by gut bacteria participate in cross-feeding to influence community structure and function, we evaluated the potential of SCFAs to modulate human gut microbiota in vitro. We employed anaerobic fecal cultivation in chemically defined medium supplemented with one of nine SCFAs to determine effects on both gut microbial community structure via 16S rRNA sequencing and function via genome reconstruction analysis. Each SCFA displayed significant and unique modulatory potential with respect to the relative abundance of bacterial taxa. Analysis of SCFA-supplemented communities revealed that alterations of individual closely related phylotypes displayed coherent changes, although exceptions were also observed which suggest strain-dependent differences in SCFA-induced changes. We used genome reconstruction to evaluate the functional implications of SCFA-mediated restructuring of fecal communities. We note that some SCFA-supplemented cultures displayed a reduction in the predicted abundance of SCFA producers, which suggests a possible undefined negative feedback mechanism. We conclude that SCFAs are not simply end-products of metabolism but also serve to modulate the gut microbiota through cross-feeding that alters the fitness of specified taxa. These results are important in the identification of prebiotics that elevate specific SCFAs for therapeutic benefit and highlight SCFA consumers as a salient part of the overall metabolic flux pertaining to bacterial fermentative processes.
Publisher
Springer Nature B.V
Subject
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