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Microbiome analysis reveals the alterations in gut microbiota in different intestinal segments of Yimeng black goats

肠道菌群 盲肠 厚壁菌 毛螺菌科 生物 瘤胃球菌 回肠 阿克曼西亚 微生物学 空肠 乳酸菌 拟杆菌 微生物群 蛋白质细菌 细菌 16S核糖体RNA 生物化学 免疫学 生态学 生物信息学 遗传学
作者
Jiakui Li,Yan Yang,Yan Zhang,Shenjin Lv,Taihua Jin,Kun Li,Zhaoqing Han,Yongzhu Li
出处
期刊:Microbial Pathogenesis [Elsevier BV]
卷期号:155: 104900-104900 被引量:11
标识
DOI:10.1016/j.micpath.2021.104900
摘要

Mounting evidence revealed the importance of gut microbiota in host metabolism, immunity and physiology, and health. Yimeng black goats (YBGs) mainly distributed in Shandong province of China, displayed a complicated intestinal microecosystem, but studies of its gut microbiota are still insufficient to report. Therefore, this study was performed with an objective to characterize the intestinal microbial community structure and diversity in the small intestine (duodenum, jejunum and ileum) and cecum of YBGs and investigated the variability of gut microbiota of different intestinal segments. A total of 12 intestinal samples were collected from YBGs for high-throughput sequencing analysis based on V3-V4 variable region of 16S rRNA genes. Our results revealed alterations in gut microbial composition with obvious differences in relative abundance between the different intestinal segments. Additionally, small intestine including duodenum, jejunum and ileum not only displayed higher species abundance and diversity than cecum but also showed a significant difference among the main components of gut microbiota based on the analytical results of alpha and beta diversities. At the phylum level, Firmicutes and Proteobacteria were the most preponderant phyla in all the samples regardless of intestinal sites. Moreover, the microbiota in small intestine was significantly different from cecum, which were characterized by the higher relative abundance of Butyrivibrio_2, Megasphaera, Halomonas, Delftia, Hydrogenophaga, Limnobacter, Pseudoxanthomonas, Novosphingobium, Janibacter and Erythrobacter, whereas the levels of Butyricicoccus, unidentified_Lachnospiraceae, Fusicatenibacter, Akkermansia, Ruminococcaceae_NK4A214_group and Lactobacillus were lower. Overall, this study first characterized the profile of gut microbiota composition in different intestinal sites and provide better insight into intestinal microbial community structure and diversity of YBGs.
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