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系统基因组学分析表明,泛古古菌是约顿古菌门内基因组简化的阿斯加德古菌的一个进化枝。

Phylogenomic Analyses Reveal that Panguiarchaeum Is a Clade of Genome-Reduced Asgard Archaea Within the Njordarchaeia.

作者信息

Huang Wen-Cong, Probst Maraike, Hua Zheng-Shuang, Szánthó Lénárd L, Szöllősi Gergely J, Ettema Thijs J G, Rinke Christian, Williams Tom A, Spang Anja

机构信息

Department of Marine Microbiology and Biogeochemistry, NIOZ, Royal Netherlands Institute for Sea Research, Den Burg 1790 AB, The Netherlands.

Department of Evolutionary & Population Biology, Institute for Biodiversity and Ecosystem Dynamics (IBED), University of Amsterdam, Amsterdam 1090 GE, The Netherlands.

出版信息

Mol Biol Evol. 2025 Sep 1;42(9). doi: 10.1093/molbev/msaf201.

Abstract

The Asgard archaea are a diverse archaeal phylum important for our understanding of cellular evolution because they include the lineage that gave rise to eukaryotes. Recent phylogenomic work has focused on characterizing the diversity of Asgard archaea in an effort to identify the closest extant relatives of eukaryotes. However, resolving archaeal phylogeny is challenging, and the positions of 2 recently described lineages-Njordarchaeales and Panguiarchaeales-are uncertain, in ways that directly bear on hypotheses of early evolution. In initial phylogenetic analyses, these lineages branched either with Asgards or with the distantly related Korarchaeota, and it has been suggested that their genomes may be affected by metagenomic contamination. Resolving this debate is important because these clades include genome-reduced lineages that may help inform our understanding of the evolution of symbiosis within Asgard archaea. Here, we performed phylogenetic analyses revealing that the Njordarchaeales and Panguiarchaeales constitute the new class Njordarchaeia within Asgard archaea. We found no evidence of metagenomic contamination affecting phylogenetic analyses. Njordarchaeia exhibit hallmarks of adaptations to (hyper-)thermophilic lifestyles, including biased sequence compositions that can induce phylogenetic artifacts unless adequately modeled. Panguiarchaeum is metabolically distinct from its relatives, with reduced metabolic potential and various auxotrophies. Phylogenetic reconciliation recovers a complex common ancestor of Asgard archaea that encoded the Wood-Ljungdahl pathway. The subsequent loss of this pathway during the reductive evolution of Panguiarchaeum may have been associated with the switch to a symbiotic lifestyle, potentially based on H2-syntrophy. Thus, Panguiarchaeum may contain the first obligate symbionts within Asgard archaea besides the lineage leading to eukaryotes.

摘要

阿斯加德古菌是一个多样的古菌门,对于我们理解细胞进化很重要,因为它们包含了产生真核生物的谱系。最近的系统基因组学研究致力于刻画阿斯加德古菌的多样性,以确定真核生物现存的最亲近亲属。然而,解析古菌系统发育具有挑战性,最近描述的两个谱系——约尔达古菌目(Njordarchaeales)和潘吉古菌目(Panguiarchaeales)的位置尚不确定,这直接影响了早期进化假说。在最初的系统发育分析中,这些谱系要么与阿斯加德古菌分支在一起,要么与亲缘关系较远的泉古菌门(Korarchaeota)分支在一起,有人认为它们的基因组可能受到宏基因组污染的影响。解决这一争论很重要,因为这些进化枝包含基因组缩减的谱系,可能有助于我们理解阿斯加德古菌内共生进化。在这里,我们进行的系统发育分析表明,约尔达古菌目和潘吉古菌目在阿斯加德古菌内构成了新的约尔达古菌纲(Njordarchaeia)。我们没有发现宏基因组污染影响系统发育分析的证据。约尔达古菌纲表现出适应(超)嗜热生活方式的特征,包括有偏差的序列组成,除非进行适当建模,否则可能会导致系统发育假象。潘吉古菌在代谢上与其亲属不同,代谢潜力降低且有各种营养缺陷型。系统发育和解恢复了一个编码伍德-Ljungdahl途径的复杂的阿斯加德古菌共同祖先。在潘吉古菌的还原进化过程中,这条途径的随后丧失可能与向共生生活方式的转变有关,可能基于H2互营营养。因此,除了导致真核生物的谱系外,潘吉古菌可能包含阿斯加德古菌内最早的专性共生体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ae0/12411855/47be32b651b0/msaf201f1.jpg

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