Rumen microbiota-associated stress alleviation by creatine pyruvate in newly received cattle: a multi-omics study
Kang Mao, Yitian Zang, Chang Wang, Wenping Yang +9
AI summary
75% confidenceThis multi-omics study investigates how creatine pyruvate (CrPyr) alleviates stress in newly received cattle by modulating rumen microbiota and host physiology. The research combines metagenomics, metabolomics, in vitro/in vivo experiments, and rumen microbiota transplantation to elucidate the underlying mechanisms.
Generated by MESSAI extraction pipeline · review against source PDF
No 3D model is mapped to this paper yet. Parameter ranges above still place reported values on the literature distribution.
Abstract
Abstract Background Stress experienced by newly received cattle is a significant challenge in the beef industry, frequently resulting in weakened immune responses and impaired growth. The rumen microbiota is essential to host health, and its imbalance can exacerbate stress. This study investigates the mechanisms by which creatine pyruvate (CrPyr) mitigates stress in newly received cattle through multi-omics approaches, including metagenomics, metabolomics, in vitro and in vivo experiments, and rumen microbiota transplantation (RMT) in mice. Results Our results revealed that CrPyr significantly reduces stress-related hormones (cortisol and adrenocorticotropic hormone) and inflammatory markers (IL-6, IL-1β, and TNF-α), and enhanced antioxidant capacity (SOD: 57.38 versus 46.93 U/mL, P 0.05; GSH-Px: 305.87 versus 217.07 U/mL, P 0.05; T-AOC: 9.62 versus 7.66 U/mL, P 0.05). Metagenomic analysis demonstrated that CrPyr increased Prevotella abundance, a key rumen bacterium involved in volatile fatty acid (VFA) production, and enriches metabolic pathways associated with energy metabolism (ATP synthesis, and pyruvate metabolism) and antioxidant defense (glutathione metabolism, FC = 1.08, P 0.05). In vitro and in vivo experiments, as well as RMT studies in mice, further validate these findings, demonstrating that CrPyr promote VFA synthesis and increased ATP production through the electron transport phosphorylation pathway. Conclusions CrPyr modulates the abundance of ruminal Prevotella in transport-stressed cattle to enhance glutathione and VFA metabolism and to accelerate ATP and nucleotide synthesis, thereby alleviating stress in newly received cattle. This multimodal approach established CrPyr as an effective nutritional intervention that improves rumen function and increases livestock productivity.
Key findings
- CrPyr significantly reduces stress-related hormones including cortisol and adrenocorticotropic hormone.
- The treatment effectively lowers inflammatory markers such as IL-6, IL-1β, and TNF-α.
- CrPyr enhances antioxidant capacity, evidenced by increased SOD, GSH-Px, and T-AOC levels.
Keywords
Identifiers
- Journal
- Microbiome
- Year
- 2026