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Metagenome-assembled genomes

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posted on 2025-04-24, 11:12 authored by Jenny MerkesvikJenny Merkesvik

Project: "In vitro modelling of the structure and metabolism of the porcine caecal microbiota in response to β-mannan exposure" (FigShare link).

Item description: Metagenome-assembled genomes from a study using in vitro fermentation as a tool to investigate complex microbial communities extracted from the caecum of pigs, and their response to both in vivo and in vitro access to a microbiota-directed β-mannan fibre.

Abstract: The intestinal microbiota plays a pivotal role in host health. Prebiotics and microbiota-directed fibres that target health-promoting microbes can potentially enhance the beneficial effects of the microbiota. β-mannans are fibres that may be utilised by a selection of beneficial bacteria, such as Roseburia, Faecalibacterium, and Prevotella species. Here, we conducted an in vitro fermentation experiment using porcine caecal material from an in vivo feeding trial with the inclusion of acetylated galactoglucomannan (AcGGM) from Norway spruce. We validated the effect of AcGGM on population abundance changes in the in vitro microbial community by comparison to an in vivo community. Functional data were obtained using metatranscriptomics to investigate gene expression of mannan-degrading enzymes during growth on AcGGM, and measurements of produced short-chain fatty acids. The in vitro fermentation identified several AcGGM-utilising taxa that significantly increased in abundance when grown on the substrate, while the same taxa were not observed to be more abundant in AcGGM-fed pigs. These taxa included several species with upregulated genes for mannan degradation that were previously unknown to utilise β-mannan.

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