生物
微生物群
多样性(政治)
人体微生物群
基因组
进化生物学
基因组
计算生物学
遗传学
基因
人类学
社会学
作者
Edoardo Pasolli,Francesco Asnicar,Serena Manara,Moreno Zolfo,Nicolai Karcher,Federica Armanini,Francesco Beghini,Paolo Manghi,Adrian Tett,Paolo Ghensi,María Carmen Collado,Benjamin L. Rice,Casey DuLong,Xochitl C. Morgan,Christopher D. Golden,Christopher Quince,Curtis Huttenhower,Nicola Segata
出处
期刊:Cell
[Cell Press]
日期:2019-01-01
卷期号:176 (3): 649-662.e20
被引量:1270
标识
DOI:10.1016/j.cell.2019.01.001
摘要
The body-wide human microbiome plays a role in health, but its full diversity remains uncharacterized, particularly outside of the gut and in international populations. We leveraged 9,428 metagenomes to reconstruct 154,723 microbial genomes (45% of high quality) spanning body sites, ages, countries, and lifestyles. We recapitulated 4,930 species-level genome bins (SGBs), 77% without genomes in public repositories (unknown SGBs [uSGBs]). uSGBs are prevalent (in 93% of well-assembled samples), expand underrepresented phyla, and are enriched in non-Westernized populations (40% of the total SGBs). We annotated 2.85 M genes in SGBs, many associated with conditions including infant development (94,000) or Westernization (106,000). SGBs and uSGBs permit deeper microbiome analyses and increase the average mappability of metagenomic reads from 67.76% to 87.51% in the gut (median 94.26%) and 65.14% to 82.34% in the mouth. We thus identify thousands of microbial genomes from yet-to-be-named species, expand the pangenomes of human-associated microbes, and allow better exploitation of metagenomic technologies.
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