Circadian regulation of the gut microbiome in ruminants: opportunities for targeted microbiota manipulation and optimized timing for interventions

Precise manipulation of the gut microbiota is complex. This study explored its circadian regulation in ruminants via time-restricted feeding. We collected 287 fecal samples (every 6 h for 48 h) from 12 lactating cows under ad libitum, daytime-restricted, and nighttime-restricted feeding. Microbiota analysis revealed rhythmic fluctuations in hindgut bacterial populations. Under feeding restrictions, 39.25% of bacterial genera (e.g., Bifidobacterium , Prevotella ) shifted rhythms in response to feeding time, while 3.90% (e.g., Succinivibrio ) did not. Fecal short-chain fatty acids (SCFA) and ammonia nitrogen (NH 3 -N) concentrations also exhibited circadian rhythms, peaking 6 h apart. Metatranscriptomics showed daily dynamics in active bacteria, archaea, eukaryotes, and bacteriophages: active bacteria and bacteriophages peaked at 08:00 and 02:00, whereas active archaea peaked at 14:00. A more active microbial community coincided with high SCFA concentration (08:00), reflected by elevated expression of genes for carbohydrate-active enzymes, antibiotic resistance, virulence, and quorum sensing. Conversely, gene expression for nitrogen metabolism, sulfur metabolism, and bacterial secretion peaked with NH 3 -N (14:00). Our findings reveal circadian rhythm-responsive features and daily shifts in the active microbiome, offering a mechanistic basis for hindgut microbiome dynamics and fermentation in ruminants, with implications for microbiota manipulation in other mammals.

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Publication Details

Journal
npj Biofilms and Microbiomes
Published
2026-09-11
DOI
https://doi.org/10.1038/s41522-026-01070-z
Primary Topic
Gut microbiota and health
Type
article
Field-Weighted Citation Impact
0.00

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article

Circadian regulation of the gut microbiome in ruminants: opportunities for targeted microbiota manipulation and optimized timing for interventions

Ya Jing Wang, Hanbeen Kim, Zhijun Cao, Shengli Li et al.
npj Biofilms and Microbiomes
Gut microbiota and health
article

Circadian regulation of the gut microbiome in ruminants: opportunities for targeted microbiota manipulation and optimized timing for interventions

Ya Jing Wang, Hanbeen Kim, Zhijun Cao, Shengli Li, Linshu Jiang, Youyoung Choi, Hongjian Yang, Mi Zhou, Shoukun Ji, Le Luo Guan, Bowen Zheng, Weixuan Tang, Wei Wang, Yangyi Hao
article en

Abstract

Precise manipulation of the gut microbiota is complex. This study explored its circadian regulation in ruminants via time-restricted feeding. We collected 287 fecal samples (every 6 h for 48 h) from 12 lactating cows under ad libitum, daytime-restricted, and nighttime-restricted feeding. Microbiota analysis revealed rhythmic fluctuations in hindgut bacterial populations. Under feeding restrictions, 39.25% of bacterial genera (e.g., Bifidobacterium , Prevotella ) shifted rhythms in response to feeding time, while 3.90% (e.g., Succinivibrio ) did not. Fecal short-chain fatty acids (SCFA) and ammonia nitrogen (NH 3 -N) concentrations also exhibited circadian rhythms, peaking 6 h apart. Metatranscriptomics showed daily dynamics in active bacteria, archaea, eukaryotes, and bacteriophages: active bacteria and bacteriophages peaked at 08:00 and 02:00, whereas active archaea peaked at 14:00. A more active microbial community coincided with high SCFA concentration (08:00), reflected by elevated expression of genes for carbohydrate-active enzymes, antibiotic resistance, virulence, and quorum sensing. Conversely, gene expression for nitrogen metabolism, sulfur metabolism, and bacterial secretion peaked with NH 3 -N (14:00). Our findings reveal circadian rhythm-responsive features and daily shifts in the active microbiome, offering a mechanistic basis for hindgut microbiome dynamics and fermentation in ruminants, with implications for microbiota manipulation in other mammals.

npj Biofilms and Microbiomes
Hebei Agricultural University (CN), University of British Columbia (CA), University of Alberta (CA), Xinjiang Agricultural University (CN), Beijing University of Agriculture (CN), State Key Laboratory of Animal Nutrition, China Agricultural University (CN)
National Postdoctoral Program for Innovative Talents, National Key Research and Development Program of China
Zero hunger
Openalex Percentile: Top 18%
Gut microbiota and health
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