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定义真核生物以剖析真核生物的起源。

Defining eukaryotes to dissect eukaryogenesis.

机构信息

Bristol Palaeobiology Group, School of Earth Sciences, Life Sciences Building, University of Bristol, Bristol BS8 1TQ, UK.

Bristol Palaeobiology Group, School of Earth Sciences, Life Sciences Building, University of Bristol, Bristol BS8 1TQ, UK.

出版信息

Curr Biol. 2023 Sep 11;33(17):R919-R929. doi: 10.1016/j.cub.2023.07.048.

Abstract

The origin of eukaryotes is among the most contentious debates in evolutionary biology, attracting multiple seemingly incompatible theories seeking to explain the sequence in which eukaryotic characteristics were acquired. Much of the controversy arises from differing views on the defining characteristics of eukaryotes. We argue that eukaryotes should be defined phylogenetically, and that doing so clarifies where competing hypotheses of eukaryogenesis agree and how we may test among aspects of disagreement. Some hypotheses make predictions about the phylogenetic origins of eukaryotic genes and are distinguishable on that basis. However, other hypotheses differ only in the order of key evolutionary steps, like mitochondrial endosymbiosis and nuclear assembly, which cannot currently be distinguished phylogenetically. Stages within eukaryogenesis may be made identifiable through the absolute dating of gene duplicates that map to eukaryotic traits, such as in genes of host or mitochondrial origin that duplicated and diverged functionally prior to emergence of the last eukaryotic common ancestor. In this way, it may finally be possible to distinguish heat from light in the debate over eukaryogenesis.

摘要

真核生物的起源是进化生物学中最具争议的话题之一,吸引了多种看似相互矛盾的理论,试图解释真核生物特征获得的顺序。大部分争议源于对真核生物定义特征的不同看法。我们认为,应该从系统发育上定义真核生物,这样可以清楚地说明真核生物起源的竞争假说在哪些方面一致,以及我们如何在不同方面进行检验。一些假说对真核生物基因的系统发育起源做出了预测,可以据此区分。然而,其他假说仅在关键进化步骤的顺序上有所不同,例如线粒体内共生和核组装,目前在系统发育上无法区分。真核生物起源的各个阶段可以通过绝对追溯映射到真核生物特征的基因重复来确定,例如在宿主或线粒体起源的基因中,在最后一个真核生物共同祖先出现之前,这些基因就已经发生了功能复制和分化。这样,也许终于有可能在真核生物起源的争论中区分事实和臆测。

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