ArticleBMC biology2024
Seasonal stability of the rumen microbiome contributes to the adaptation patterns to extreme environmental conditions in grazing yak and cattle.
Article in BMC biology, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 22 papers.
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Who cites it
22 citing papers in PubMed.
- Rumen DNA virome plasticity and viral metabolic potential are associated with seasonal adaptation in grazing yak and cattle on the Qinghai-Tibet Plateau.Journal of animal science and biotechnology · 2026Article
- Rumen ecological distribution of Pichia yeasts and their effects on rumen fermentation and microbial community.BMC microbiology · 2026Article
- Host Filtering Shapes the Soil-gut Microbiome Linkages in Pastoral Systems.Microbial ecology · 2026Article
- The Dairy Ruminant Gut Microbiome: Profile, Responsiveness to Seasonality and Impact on Milk Quality.Environmental microbiology · 2026Review
- Effects of Active Dry Yeast on Production Performance, Meat Quality, and Rumen Microecology in Lambs.Animals : an open access journal from MDPI · 2026Article
- Production, Transport, and Metabolism of Volatile Fatty Acids in the Yak Rumen: Unraveling the Unique Mechanisms Underpinning High-Altitude Adaptation.Microorganisms · 2026Review
- Host-microbiome interplay supports heat stress resilience in zebu calves.Animal microbiome · 2026Article
- The developmental trajectory and maturation of the Hulunbuir sheep (Ovis aries) microbiome.Animal microbiome · 2026Article
- Multi-kingdom fecal microbiome and virus-host interactions associated with growth performance of indigenous beef calves in Guizhou.BMC microbiology · 2026Article
- A comparative study of gut microbiota and metabolites in Tibetan sheep during cold and warm seasons.Frontiers in veterinary science · 2026Article
- Pasture diversity and regenerative management shape ruminant gut microbiome dynamics within a real multi-year farming system.Frontiers in microbiology · 2026Article
- Article
- Unveiling the rumen-microbiome-brain circuit: a unique dimension of gut-brain axis in ruminants.Journal of animal science and biotechnology · 2025Review
- Impact of Organic and Conventional Husbandry Systems on the Gut Microbiome and Resistome in Pigs.Microorganisms · 2025Article
- Effects of changes in rumen microbial adaptability on rumen fermentation and nutrient digestion in Horqin beef cattle during different seasons of grazing and supplementary feeding.BMC microbiology · 2025Article
- Reducing crude protein content in the diet of lactating dairy cows improved nitrogen-use-efficiency and reduced N excretion in urine, whilst having no obvious effects on the rumen microbiome.Journal of animal science and biotechnology · 2025Article
- Fecal ingestion rate based on worker activity patterns during stool handling in a ruminant farm.Narra J · 2025Article
- Grazing Intensities Regulated the Effects of Seasonal Dietary Pattern on Gut Bacterial Community Composition of Sheep.Microorganisms · 2025Article
- 'Geophagy' and Clay Minerals: Influencing Ruminal Microbial Fermentation for Methane Mitigation.Microorganisms · 2025Review
- The effect ofFrontiers in veterinary science · 2025Article
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Authors and funding
9 authors.
Funding
Abstract
backgroundThe rumen microbiome plays an essential role in maintaining ruminants' growth and performance even under extreme environmental conditions, however, which factors influence rumen microbiome stability when ruminants are reared in such habitats throughout the year is unclear. Hence, the rumen microbiome of yak (less domesticated) and cattle (domesticated) reared on the Qinghai-Tibetan Plateau through the year were assessed to evaluate temporal changes in their composition, function, and stability.
resultsRumen fermentation characteristics and pH significantly shifted across seasons in both cattle and yak, but the patterns differed between the two ruminant species. Ruminal enzyme activity varied with season, and production of xylanase and cellulase was greater in yak compared to cattle in both fall and winter. The rumen bacterial community varied with season in both yak and cattle, with higher alpha diversity and similarity (beta diversity) in yak than cattle. The diversity indices of eukaryotic community did not change with season in both ruminant species, but higher similarity was observed in yak. In addition, the similarity of rumen microbiome functional community was higher in yak than cattle across seasons. Moreover, yak rumen microbiome encoded more genes (GH2 and GH3) related to cellulose and hemicellulose degradation compared to cattle, and a new enzyme family (GH160) gene involved in oligosaccharides was uniquely detected in yak rumen. The season affected microbiome attenuation and buffering values (stability), with higher buffering value in yak rumen microbiome than cattle. Positive correlations between antimicrobial resistance gene (dfrF) and CAZyme family (GH113) and microbiome stability were identified in yak, but such relationship was negatively correlated in cattle.
conclusionsThe findings of the potential of cellulose degradation, the relationship between rumen microbial stability and the abundance of functional genes varied differently across seasons and between yak and cattle provide insight into the mechanisms that may underpin their divergent adaptation patterns to the harsh climate of the Qinghai-Tibetan Plateau. These results lay a solid foundation for developing strategies to maintain and improve rumen microbiome stability and dig out the potential candidates for manufacturing lignocellulolytic enzymes in the yak rumen to enhance ruminants' performance under extreme environmental conditions.
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