古细菌
生物
基因组
克莱德
系统发育树
进化生物学
系统发育学
基因组
多元化(营销策略)
遗传学
系统发育多样性
系统基因组学
基因
计算生物学
基因组学
生态学
操纵子
保守序列
基因组进化
遗传多样性
水平基因转移
作者
Yingli Zhou,Jing-Chun Feng,Rui Lu,Zhe Chen,Paraskevi Mara,Xuanyu Tao,Jinyi Liu,Yongji Huang,Junlin Hu,Jianyun Yao,Virginia P. Edgcomb,Andreas Teske,Xiaoxue Wang,Si Zhang
标识
DOI:10.1038/s41467-026-73573-4
摘要
Anaerobic methanotrophic (ANME) archaea have been primarily documented by metagenomic analysis of environmental samples. The mechanisms that drive their diversification and speciation are poorly understood. Here we analyse the phylogenomic diversity at the species and strain levels of clade ANME-1 from deep-sea cold seeps, as a model system with a well-studied phylogenetic framework. We reconstruct high-quality circular metagenomic-assembled genomes (cMAGs) and identify highly variable genomic hotspots that distinguish them. Genomic differentiation and diversification in ANME-1 is associated with genes involved in prokaryotic defense systems, transport mechanisms and methane metabolism. In addition, heterologous expression of ANME-1 hicAB operons supports their proposed role as toxin/antitoxin systems, possibly involved in mediating responses to environmental stresses. Anaerobic methanotrophic (ANME) archaea are abundant in marine cold seeps. Here, the authors reconstruct high-quality circular metagenomic-assembled genomes and identify variable genomic hotspots associated with phylogenomic diversity at the species and strain levels.
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