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Relationship between hindgut microbes and feed conversion ratio in Hu sheep and microbial longitudinal development

后肠 生物 断奶 饲料转化率 瘤胃 微生物 动物科学 发酵 食品科学 生态学 细菌 幼虫 内分泌学 遗传学 体重 中肠
作者
Dan Xu,Jiangbo Cheng,Deyin Zhang,Kai Huang,Yukun Zhang,Xiaolong Li,Yuan Zhao,Liming Zhao,Jianhui Wang,Changchun Lin,Xiaobin Yang,Rui Zhai,Panpan Cui,Xiwen Zeng,Yongliang Huang,Wei Wang,Jia Liu,Kunchao Han,Xiaoqiang Liu,Fan Yang,Huibin Tian,Xiuxiu Weng,Xiaoxue Zhang,Wei Wang
出处
期刊:Journal of Animal Science [Oxford University Press]
卷期号:101
标识
DOI:10.1093/jas/skad322
摘要

Abstract Feed efficiency is an important indicator in the sheep production process, which plays an important role in improving economic benefits and strengthening energy conservation and emission reduction. Compared with the rumen, the fermentation of the hindgut microorganisms can also provide part of the energy for the host, and the composition of the hindgut microorganisms will affect the feed efficiency. Therefore, we hope to find new ways to regulate sheep feed efficiency by studying the sheep gut microbes. In this study, male Hu sheep with the same birth date were raised under the same conditions until 180 d old. The sheep were divided into high and low groups according to the feed conversion ratio (FCR) at 80 to 180 d old, and the differences in rectal microorganisms between the two groups were compared. The permutational multivariate analysis (PERMANOVA) test showed that there were differences in microorganisms between the two groups (P < 0.05). Combined with linear fitting analysis, a total of six biomarkers were identified, including Ruminobacter, Eubacterium_xylanophilum_group, Romboutsia, etc. Functional enrichment analysis showed that microorganisms may affect FCR through volatile fatty acids synthesis and inflammatory response. At the same time, we conducted a longitudinal analysis of the hindgut microbes, sampling nine-time points throughout the sheep birth to market stages. The microbiota is clearly divided into two parts: before weaning and after weaning, and after weaning microbes are less affected by before weaning microbial composition.
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