古细菌
生物
内共生
进化生物学
α蛋白细菌
门
真核细胞
系统发育学
最近的共同祖先
系统发育树
生物发生
祖先
基因
遗传学
计算生物学
质体
地理
叶绿体
考古
16S核糖体RNA
作者
Victor Tobiasson,Jacob Luo,Yuri I. Wolf,Eugene V. Koonin
标识
DOI:10.1101/2024.10.14.618318
摘要
Abstract The origin of eukaryotes is one of the key problems in evolutionary biology 1,2 . The demonstration that the Last Eukaryotic Common Ancestor (LECA) already contained the mitochondrion, an endosymbiotic organelle derived from an alphaproteobacterium, and the discovery of Asgard archaea, the closest archaeal relatives of eukaryotes 3–7 , inform and constrain evolutionary scenarios of eukaryogenesis 8 . We undertook a comprehensive analysis of the origins of core eukaryotic genes tracing to the LECA within a rigorous statistical framework centered around evolutionary hypotheses testing using constrained phylogenetic trees. The results reveal dominant contributions of Asgard archaea to the origin of most of the conserved eukaryotic functional systems and pathways. A limited contribution from Alphaproteobacteria was identified, primarily relating to the energy transformation systems and Fe-S cluster biogenesis, whereas ancestry from other bacterial phyla was scattered across the eukaryotic functional landscape, without clear consistent trends. These findings suggest a model of eukaryogenesis in which key features of eukaryotic cell organization evolved in the Asgard lineage leading to the LECA, followed by the capture of the Alphaproteobacterial endosymbiont, and augmented by numerous but sporadic horizontal acquisition of genes from other bacteria both before and after endosymbiosis.
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