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Transcriptome profiling revealed that key rumen epithelium functions change in relation to short-chain fatty acids and rumen epithelium-attached microbiota during the weaning transition

瘤胃 生物 上皮 转录组 断奶 微生物群 新陈代谢 肠上皮 微生物学 生物化学 细胞生物学 基因 动物科学 基因表达 遗传学 发酵
作者
Koki Nishihara,J. Niekerk,David J. Innes,Zhixiong He,Ángela Cánovas,Le Luo Guan,M.A. Steele
出处
期刊:Genomics [Elsevier BV]
卷期号:115 (5): 110664-110664 被引量:2
标识
DOI:10.1016/j.ygeno.2023.110664
摘要

This study aims to characterize the functional changes of the rumen epithelium associated with ruminal short-chain fatty acid (SCFA) concentration and epithelium-attached microbes during the weaning transition in dairy calves. Ruminal SCFA concentrations were determined, and transcriptome and microbiota profiling in biopsied rumen papillae were obtained from Holstein calves before and after weaning using RNA- and amplicon sequencing. Metabolic pathway analysis showed that pathways related to SCFA metabolism and cell apoptosis were up- and down-regulated postweaning, respectively. Functional analysis showed that genes related to SCFA absorption, metabolism, and protective roles against oxidative stress were positively correlated with ruminal SCFA concentrations. The relative abundance of epithelium-attached Rikenellaceae RC9 gut group and Campylobacter was positively correlated with genes involved in SCFA absorption and metabolism, suggesting that these microbes can cooperatively affect host functions. Future research should examine the contribution of attenuated apoptosis on rumen epithelial functional shifts during the weaning transition.

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