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真核生物的古菌祖先:不再那么难以捉摸了。

Archaeal ancestors of eukaryotes: not so elusive any more.

作者信息

Koonin Eugene V

机构信息

National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD, 20894, USA.

出版信息

BMC Biol. 2015 Oct 5;13:84. doi: 10.1186/s12915-015-0194-5.

Abstract

The origin of eukaryotes is one of the hardest problems in evolutionary biology and sometimes raises the ominous specter of irreducible complexity. Reconstruction of the gene repertoire of the last eukaryotic common ancestor (LECA) has revealed a highly complex organism with a variety of advanced features but no detectable evolutionary intermediates to explain their origin. Recently, however, genome analysis of diverse archaea led to the discovery of apparent ancestral versions of several signature eukaryotic systems, such as the actin cytoskeleton and the ubiquitin network, that are scattered among archaea. These findings inspired the hypothesis that the archaeal ancestor of eukaryotes was an unusually complex form with an elaborate intracellular organization. The latest striking discovery made by deep metagenomic sequencing vindicates this hypothesis by showing that in phylogenetic trees eukaryotes fall within a newly identified archaeal group, the Lokiarchaeota, which combine several eukaryotic signatures previously identified in different archaea. The discovery of complex archaea that are the closest living relatives of eukaryotes is most compatible with the symbiogenetic scenario for eukaryogenesis.

摘要

真核生物的起源是进化生物学中最棘手的问题之一,有时还会引发不可简化复杂性这一不祥的幽灵。对最后一个真核生物共同祖先(LECA)的基因库进行重建后发现,它是一种高度复杂的生物体,具有多种先进特征,但没有可检测到的进化中间环节来解释这些特征的起源。然而,最近对多种古菌的基因组分析发现了几种标志性真核生物系统的明显祖先版本,比如肌动蛋白细胞骨架和泛素网络,它们分散在不同的古菌中。这些发现催生了这样一种假说,即真核生物的古菌祖先具有异常复杂的形态,其细胞内结构精巧。深度宏基因组测序的最新惊人发现证实了这一假说,该发现表明,在系统发育树中,真核生物属于一个新确定的古菌群体——洛基古菌门,它整合了先前在不同古菌中发现的几种真核生物特征。发现与真核生物亲缘关系最近的复杂古菌,这与真核生物起源的共生起源假说最为契合。

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