Shenzhen Key Laboratory of Marine Microbiome Engineering, Institute for Advanced Study, Shenzhen University, Shenzhen, P. R. China.
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD, USA.
Nature. 2021 May;593(7860):553-557. doi: 10.1038/s41586-021-03494-3. Epub 2021 Apr 28.
Asgard is a recently discovered superphylum of archaea that appears to include the closest archaeal relatives of eukaryotes. Debate continues as to whether the archaeal ancestor of eukaryotes belongs within the Asgard superphylum or whether this ancestor is a sister group to all other archaea (that is, a two-domain versus a three-domain tree of life). Here we present a comparative analysis of 162 complete or nearly complete genomes of Asgard archaea, including 75 metagenome-assembled genomes that-to our knowledge-have not previously been reported. Our results substantially expand the phylogenetic diversity of Asgard and lead us to propose six additional phyla that include a deep branch that we have provisionally named Wukongarchaeota. Our phylogenomic analysis does not resolve unequivocally the evolutionary relationship between eukaryotes and Asgard archaea, but instead-depending on the choice of species and conserved genes used to build the phylogeny-supports either the origin of eukaryotes from within Asgard (as a sister group to the expanded Heimdallarchaeota-Wukongarchaeota branch) or a deeper branch for the eukaryote ancestor within archaea. Our comprehensive protein domain analysis using the 162 Asgard genomes results in a major expansion of the set of eukaryotic signature proteins. The Asgard eukaryotic signature proteins show variable phyletic distributions and domain architectures, which is suggestive of dynamic evolution through horizontal gene transfer, gene loss, gene duplication and domain shuffling. The phylogenomics of the Asgard archaea points to the accumulation of the components of the mobile archaeal 'eukaryome' in the archaeal ancestor of eukaryotes (within or outside Asgard) through extensive horizontal gene transfer.
Asgard 是一个最近发现的古菌超级门,它似乎包含了真核生物最接近的古菌亲属。关于真核生物的古菌祖先是否属于 Asgard 超级门,或者这个祖先是否与所有其他古菌是姐妹群(即生命之树的二域或三域),仍存在争议。在这里,我们对 162 个完整或几乎完整的 Asgard 古菌基因组进行了比较分析,其中包括 75 个我们认为以前没有报道过的宏基因组组装基因组。我们的结果大大扩展了 Asgard 的系统发育多样性,并促使我们提出了另外六个门,其中包括一个我们暂命名为 Wukongarchaeota 的深分支。我们的系统发育基因组分析不能明确解决真核生物与 Asgard 古菌之间的进化关系,但根据构建系统发育时选择的物种和保守基因,支持真核生物起源于 Asgard (作为 Heimdallarchaeota-Wukongarchaeota 分支的姐妹群),或者支持真核生物祖先在古菌中有更深的分支。我们使用 162 个 Asgard 基因组进行的全面蛋白质结构域分析导致了真核生物特征蛋白集的重大扩展。Asgard 的真核生物特征蛋白显示出可变的系统发育分布和结构域结构,这表明通过水平基因转移、基因丢失、基因复制和结构域改组进行了动态进化。Asgard 古菌的系统发育基因组学表明,通过广泛的水平基因转移,移动古菌“真核生物组”的成分在真核生物的古菌祖先(Asgard 内或外)中积累。