克莱德
生物
生命之树(生物学)
进化生物学
分类单元
门
康蒂格
微生物群
多样性(政治)
放大器
系统发育树
系统发育学
聚类分析
分类等级
计算生物学
生态学
基因组学
扩增子测序
遗传多样性
基因组
生物多样性
生物分类
细菌分类学
人体微生物群
基因
树(集合论)
采样(信号处理)
古细菌
寄主(生物学)
DNA测序
作者
Vishnu Prasoodanan PK,Oleksandr M. Maistrenko,Anthony Fullam,Daniel R. Mende,Ece Kartal,Luís Pedro Coelho,Anja Spang,Peer Bork,Thomas S. B. Schmidt
标识
DOI:10.1038/s41564-026-02314-6
摘要
Abstract The ongoing census of microbial life is hampered by disparate sampling across Earth’s habitats, challenges in isolating uncultivated organisms, limited resolution in taxonomic marker gene amplicons and incomplete recovery of metagenome-assembled genomes. Here we quantify discoverable Bacterial and Archaeal diversity in a comprehensive, curated cross-habitat dataset of 92,187 publicly available metagenomes. Clustering 502 million sequences of 130 marker genes, we predict ~705,000 Bacterial and ~27,000 Archaeal species-level clades, the vast majority of which were hidden among unbinned contigs. We estimate that ten and 145 previously undescribed Archaeal and Bacterial phyla, respectively, are discoverable in this dataset. We identify soils and aquatic environments as hotspots of discoverable lineages, but predict that undescribed taxa remain abundant across all habitats. Finally, we show that prokaryotic diversity appears to arise within common evolutionary patterns, as clade size distributions follow power laws, consistently across the Tree of Life.
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