A catalog of microbial genes and metagenome-assembled genomes from the quail gut microbiome

鹌鹑 基因组 生物 基因组 微生物群 基因 小桶 遗传学 肠道菌群 计算生物学 生态学 转录组 基因表达 免疫学
作者
Xinwei Xiong,Yousheng Rao,Jinge Ma,Zhangfeng Wang,Qin He,Jishang Gong,Wentao Sheng,Jiguo Xu,Xuenong Zhu,Yuwen Tan,Yanbei Yang
出处
期刊:Poultry Science [Elsevier BV]
卷期号:102 (10): 102931-102931 被引量:6
标识
DOI:10.1016/j.psj.2023.102931
摘要

The gut microbiome plays an important role in quail feed efficiency, immunity, production, and even behavior. Gut microbial gene catalogs and reference genomes are important for understanding the quail gut microbiome. However, quail gut microbes are lacked sequenced genomes and functional information to date. In this study, we report the first catalog of the microbial genes and metagenome-assembled genomes (MAGs) in fecal and cecum luminal content samples from 3 quail breeds using deep metagenomic sequencing. We identified a total of 2,419,425 nonredundant genes in the quail genome catalog, and a total of 473 MAGs were reconstructed through binning analysis. At 95% average nucleotide identity, the 473 MAGs were clustered into 283 species-level genome bins (SGBs), of which 225 SGBs belonged to species without any available genomes in the current database. Based on the quail gene catalog and MAGs, we identified 142 discriminative bacterial species and 244 discriminative MAGs between Chinese yellow quails and Japanese quails. The discriminative MAGs suggested a strain-level difference in the gut microbial composition. Additionally, a total of 25 Kyoto Encyclopedia of Genes and Genomes functional terms and 88 carbohydrate-active enzymes were distinctly enriched between Chinese yellow quails and Japanese quails. Most of the different species and MAGs were significantly interrelated with the shifts in the functional capacities of the quail gut microbiome. Taken together, we constructed a quail gut microbial gene catalog and enlarged the reference of quail gut microbial genomes. The results of this study provide a powerful and invaluable resource for quail gut microbiome-related research.
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