奶牛产后酮症发展与瘤胃微生物组相关:一项前瞻性巢式病例对照研究

IF 13.8 1区 生物学 Q1 MICROBIOLOGY
Fanlin Kong, Shuo Wang, Yijia Zhang, Chen Li, Dongwen Dai, Cheng Guo, Yajing Wang, Zhijun Cao, Hongjian Yang, Yanliang Bi, Wei Wang, Shengli Li
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引用次数: 0

摘要

背景:大约三分之一的奶牛患有产后疾病。酮症被认为是其他产后疾病的重要诱因,因为它扰乱了能量代谢。虽然瘤胃微生物组可能通过提供挥发性脂肪酸参与酮症的病因学,但酮症奶牛的瘤胃环境动力学尚不清楚。本研究利用多组学技术,旨在阐明酮症奶牛分娩过程中瘤胃微生物组的变化,以及瘤胃微生物组与宿主能量代谢的关系。选取61头酮症奶牛和84头健康奶牛,分别在产犊第21天和第21天采集了810份瘤胃内容物样本和789份血清样本。结果:酮症奶牛分娩后瘤胃细菌组成发生显著变化,需要较长的恢复时间。在第3和7天,酮症奶牛的丙酸摩尔比低于健康奶牛,且与血清β-羟基丁酸(BHBA)水平呈负相关。发酵亚途径丙酸代谢和部分糖原氨基酸途径在第3天下调。普雷沃氏菌、UBA1066和微生物群多样性指数通过精氨酸、丙氨酸、甘氨酸或丙酸调节血清BHBA和葡萄糖(GLU)水平。对酮症奶牛施用丙酸可能降低血清BHBA浓度。结论:总的来说,我们发现酮症奶牛产犊后会发生瘤胃破裂,糖原底物(如丙酸盐)不足可能与酮症的发生有关。本研究结果对奶牛瘤胃微生物组动力学与宿主能量代谢的关系具有重要意义,为今后开展瘤胃微生物组研究,改善奶牛产后管理奠定基础。视频摘要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rumen microbiome associates with postpartum ketosis development in dairy cows: a prospective nested case-control study.

Background: Approximately, one-third of dairy cows suffer from postpartum diseases. Ketosis is considered an important inducer of other postpartum diseases by disrupting energy metabolism. Although the rumen microbiome may be involved in the etiology of ketosis by supplying volatile fatty acids, the rumen environmental dynamics of ketosis cows are unclear. Using multi-omics, this study aimed to elucidate changes in the rumen microbiome during parturition of ketosis cows and the association between the rumen microbiome and host energy metabolism. The study included 810 rumen content samples and 789 serum samples from day - 21 and 21 relative to calving day from 61 ketosis cows and 84 healthy cows.

Results: In ketosis cows, the rumen bacterial composition after parturition changed dramatically and needed a longer time to restore. The molar proportions of propionate were lower in ketosis cows than those in healthy cows on days 3 and 7 and negatively correlated with the serum β-hydroxybutyrate (BHBA) levels. The fermentation sub-pathway of propionate metabolism and partial glucogenic amino acid pathways were downregulated on day 3. Prevotella, UBA1066, and microbiota diversity indices regulate serum BHBA and glucose (GLU) levels via arginine, alanine, glycine, or propionate. Propionate administration to ketosis cows potentially decreased the serum BHBA concentration.

Conclusions: Collectively, we found rumen disruption happened after calving among ketosis cows, and insufficient glycogenic substrates, such as propionate, may be related to ketosis development. The study findings have implications for the relationship between rumen microbiome dynamics and host energy metabolism, which lays the foundation for the future rumen microbiome investigation for improving postpartum management in cows. Video Abstract.

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来源期刊
Microbiome
Microbiome MICROBIOLOGY-
CiteScore
21.90
自引率
2.60%
发文量
198
审稿时长
4 weeks
期刊介绍: Microbiome is a journal that focuses on studies of microbiomes in humans, animals, plants, and the environment. It covers both natural and manipulated microbiomes, such as those in agriculture. The journal is interested in research that uses meta-omics approaches or novel bioinformatics tools and emphasizes the community/host interaction and structure-function relationship within the microbiome. Studies that go beyond descriptive omics surveys and include experimental or theoretical approaches will be considered for publication. The journal also encourages research that establishes cause and effect relationships and supports proposed microbiome functions. However, studies of individual microbial isolates/species without exploring their impact on the host or the complex microbiome structures and functions will not be considered for publication. Microbiome is indexed in BIOSIS, Current Contents, DOAJ, Embase, MEDLINE, PubMed, PubMed Central, and Science Citations Index Expanded.
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