Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut
Here, the authors tailor an acetylated galactoglucomannan (AcGGM) fibre from spruce wood to specifically enrich Roseburia and Faecalibacterium - beneficial species which have the enzymatic machinery to breakdown the fibre and generate butyrate. They subsequently perform a piglet feeding trial, metag...
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Nature Portfolio
2020
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oai:doaj.org-article:6e5fccddd70b4f2492963a10a80b13c22021-12-02T17:31:25ZMicrobiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut10.1038/s41467-020-19585-02041-1723https://doaj.org/article/6e5fccddd70b4f2492963a10a80b13c22020-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19585-0https://doaj.org/toc/2041-1723Here, the authors tailor an acetylated galactoglucomannan (AcGGM) fibre from spruce wood to specifically enrich Roseburia and Faecalibacterium - beneficial species which have the enzymatic machinery to breakdown the fibre and generate butyrate. They subsequently perform a piglet feeding trial, metagenomics and metaproteomics, together showing that AcGGM-fed pigs exhibit not only increased Roseburia and Faecalibacterium populations with AcGGM-specific mannan-specific esterases, but also secondary metabolic pathways.Leszek MichalakJohn Christian GabyLeidy LagosSabina Leanti La RosaTorgeir R. HvidstenCatherine Tétard-JonesWilliam G. T. WillatsNicolas TerraponVincent LombardBernard HenrissatJohannes DrögeMagnus Øverlie ArntzenLive Heldal HagenMargareth ØverlandPhillip B. PopeBjørge WesterengNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020) |
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Science Q Leszek Michalak John Christian Gaby Leidy Lagos Sabina Leanti La Rosa Torgeir R. Hvidsten Catherine Tétard-Jones William G. T. Willats Nicolas Terrapon Vincent Lombard Bernard Henrissat Johannes Dröge Magnus Øverlie Arntzen Live Heldal Hagen Margareth Øverland Phillip B. Pope Bjørge Westereng Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
description |
Here, the authors tailor an acetylated galactoglucomannan (AcGGM) fibre from spruce wood to specifically enrich Roseburia and Faecalibacterium - beneficial species which have the enzymatic machinery to breakdown the fibre and generate butyrate. They subsequently perform a piglet feeding trial, metagenomics and metaproteomics, together showing that AcGGM-fed pigs exhibit not only increased Roseburia and Faecalibacterium populations with AcGGM-specific mannan-specific esterases, but also secondary metabolic pathways. |
format |
article |
author |
Leszek Michalak John Christian Gaby Leidy Lagos Sabina Leanti La Rosa Torgeir R. Hvidsten Catherine Tétard-Jones William G. T. Willats Nicolas Terrapon Vincent Lombard Bernard Henrissat Johannes Dröge Magnus Øverlie Arntzen Live Heldal Hagen Margareth Øverland Phillip B. Pope Bjørge Westereng |
author_facet |
Leszek Michalak John Christian Gaby Leidy Lagos Sabina Leanti La Rosa Torgeir R. Hvidsten Catherine Tétard-Jones William G. T. Willats Nicolas Terrapon Vincent Lombard Bernard Henrissat Johannes Dröge Magnus Øverlie Arntzen Live Heldal Hagen Margareth Øverland Phillip B. Pope Bjørge Westereng |
author_sort |
Leszek Michalak |
title |
Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
title_short |
Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
title_full |
Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
title_fullStr |
Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
title_full_unstemmed |
Microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
title_sort |
microbiota-directed fibre activates both targeted and secondary metabolic shifts in the distal gut |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/6e5fccddd70b4f2492963a10a80b13c2 |
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