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

IF 5.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Wen-Cong Huang, Maraike Probst, Zheng-Shuang Hua, Lénárd L Szánthó, Gergely J Szöllősi, Thijs J G Ettema, Christian Rinke, Tom A Williams, Anja Spang
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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.

系统基因组学分析表明,Panguiarchaeum是Njordarchaeia中基因组减少的Asgard古菌的一个分支。
阿斯加德古菌是一个多样化的古菌门,对我们理解细胞进化很重要,因为它们包括产生真核生物的谱系。最近的系统基因组学工作集中在表征阿斯加德古菌的多样性,以努力确定真核生物的现存近亲。然而,解决古细菌的系统发育是具有挑战性的,最近描述的两个谱系- Njordarchaeales和Panguiarchaeales -的位置是不确定的,这直接影响了早期进化的假设。在最初的系统发育分析中,这些谱系要么与阿斯加德人分支,要么与远亲Korarchaeota分支,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,因为这些进化支包括基因组减少的谱系,这可能有助于我们了解阿斯加德古菌内共生的进化。在这里,我们进行了系统发育分析,揭示了Njordarchaeales和panguarchaeales构成了Asgard古细菌中新的Njordarchaeia纲。我们没有发现宏基因组污染影响系统发育分析的证据。Njordarchaeia表现出对(超)嗜热生活方式的适应特征,包括有偏差的序列组成,如果没有充分的建模,可能会诱发系统发育伪像。盘古菌在代谢方面不同于其近缘种,具有较低的代谢潜能和各种营养缺陷。系统发育和解恢复了一个复杂的阿斯加德古菌的共同祖先,该祖先编码了Wood-Ljungdahl途径。在pangiarchaeum的还原进化过程中,这一途径的缺失可能与转向一种可能基于H2-syntrophy的共生生活方式有关。因此,泛古菌可能是阿斯加德古菌中第一个专性共生体。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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