PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 11, 2026Journal of Animal Science and Biotechnology/Journal of animal science and biotechnology3 citationsOpen Access

Dietary β-hydroxy-β-methyl butyrate supplementation improves intestinal health and growth performance in Tibetan sheep lambs via modulating small intestinal microbiota

JCJieqiong CaiWWWenliang WuLWLamei Wang

Key Points

  • The study aims to evaluate the effects of β-hydroxy-β-methyl butyrate (HMB) on intestinal health and growth performance in Tibetan sheep lambs.
  • 120 healthy male Tibetan lambs were assigned to four dietary groups: control and three levels of HMB supplementation over 90 days.
  • Metagenomics and untargeted metabolomics were utilized to analyze intestinal health.
  • Morphological and enzymatic assays were performed on intestinal tissues post-slaughter.
  • M-HMB treatment increased average daily gain without affecting feed intake, improving feed utilization efficiency.
  • Enhancements in small intestinal morphology, villus height, and digestive enzyme activity were observed.
  • Microbiota analysis showed that M-HMB improved small intestinal microbial composition and carbohydrate degradation capacity, increasing SCFA production.

Abstract

Abstract Background Tibetan sheep grazing on the Qinghai-Tibet Plateau require dietary protein supplementation; however, they face economic constraints due to the high cost of feed transportation in this region. Given that the leucine metabolite β-hydroxy-β-methyl butyrate (HMB) enhances both protein synthesis and intestinal nutrient absorption, this study employed metagenomics and untargeted metabolomics to systematically evaluate HMB's effects on antioxidant capacity, immune response, microbiota, metabolites, and the health of the small intestine in Tibetan sheep. A total of 120 healthy weaned 60-day-old male Tibetan lambs were assigned to diets containing 0 mg/kg (control group, CON), 430 mg/kg (low HMB, L-HMB), 715 mg/kg (medium HMB, M-HMB), or 1,000 mg/kg (high HMB, H-HMB) for 90 d. At the end of the experiment, 6 lambs from each group were slaughtered for intestinal tissue and content sampling. Results The M-HMB treatment significantly increased average daily gain of the lambs without affecting feed intake, thereby improving feed utilization efficiency. M-HMB promoted the development of small intestinal morphological and elevated villus height, while also enhancing the activities of digestive enzyme and disaccharidase activities. Furthermore, M-HMB enhanced the antioxidant capacity, immune response, and barrier function of the small intestine. Metagenomic analysis revealed that M-HMB supplementation improved the composition of the small intestinal microbiota in Tibetan sheep, specifically increasing the relative abundance of Ruminococcus bacterium P7 and R. bromii , and enhanced microbial carbohydrate degradation capacity. Metabolomic analysis demonstrated that M-HMB supplementation significantly altered the small intestinal metabolite profile, enhancing carbohydrate metabolic pathways and increased the production of short-chain fatty acids (SCFAs). M-HMB upregulated PLCβ1 and ERK1/2 protein expression levels in small intestinal tissue and elevated the proportion of Ki67-positive cells at the basal crypt region of small intestinal crypts, suggesting enhanced proliferative activity of intestinal epithelial cells. Conclusions In summary, dietary supplementation with M-HMB (715 mg/kg) promoted small intestinal growth and development, enhanced digestive and absorptive functions, optimized the microbial composition, improved carbohydrate degradation, and increased the production of SCFAs, ultimately improving the growth performance of Tibetan sheep lambs. Graphical Abstract

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Cai et al. (2026) studied this question.

synapsesocial.com/papers/698c1c11267fb587c655e31chttps://doi.org/10.1186/s40104-025-01345-z
Ask AI
Helpful
Bookmark
Share
View Full Paper