Abstract
In this article, the authors explore the impact of a diet with reduced fiber content on the gut microbiota-host symbiosis in a mouse model. More importantly, they examine the resilience of the intestinal symbiosis after the return to a standard (chow) diet. Some of the measured parameters (intestinal barrier impairment and bacterial glycan-degrading enzymatic activities) returned to control values. However, this was not the case for bacterial richness—the number of different bacteria observed—which remained durably reduced. Among related bacteria, some groups receded and remained undetected until 6 weeks after the return to the chow diet while others saw their abundance increase in replacement. The authors find that a temporary fiber deprivation lasting as little as 3 weeks can cause a transition to an alternative stable microbiota state, i.e., a lasting change in intestinal microbiota composition.
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CITATION STYLE
Rous, C., Cadiou, J., Yazbek, H., Monzel, E., Desai, M. S., Doré, J., … Mondot, S. (2025). Temporary dietary fiber depletion prompts rapid and lasting gut microbiota restructuring in mice. Microbiology Spectrum, 13(3). https://doi.org/10.1128/spectrum.01517-24
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