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两三个域:基因组时代的生命之树的新视角。

Two or three domains: a new view of tree of life in the genomics era.

机构信息

Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, People's Republic of China.

Laboratory of Environmental Microbiology and Toxicology, School of Biological Sciences, The University of Hong Kong, Pokfulam Road, Hong Kong SAR, Hong Kong, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2018 Apr;102(7):3049-3058. doi: 10.1007/s00253-018-8831-x. Epub 2018 Feb 27.

DOI:10.1007/s00253-018-8831-x
PMID:29484479
Abstract

The deep phylogenetic topology of tree of life is in the center of a long-time dispute. The Woeseian three-domain tree theory, with the Eukarya evolving as a sister clade to Archaea, competes with the two-domain tree theory (the eocyte tree), with the Eukarya branched within Archaea. Revealed by the ongoing debate over the last three decades, sophisticated and proper phylogenetic methods should necessarily be paid with more emphasis, especially these are focusing on the compositional heterogeneity of sites and lineages, and the heterotachy issue. The newly emerging archaeal lineages with numerous eukaryotic-like features, such as membrane trafficking and cellular compartmentalization, are phylogenetically the closest to eukaryotes currently. These findings highlight the evolutionary history from an ancient archaeon to a more complex archaeon with protoeukaryotic-like features and complex cellular structures, thus providing clues to understand eukaryogenesis process. The increasing repertoire of precise genomic contents provides great advantages on understanding the deep phylogeny of tree of life and ancient evolutionary events on Eukarya branching process.

摘要

生命之树的深层系统发育拓扑结构一直是一个长期存在争议的问题。沃斯三人域树理论认为,真核生物与古菌是姐妹分支,而二域树理论(原核生物树)则认为真核生物在古菌内部分支。在过去三十年的持续争论中揭示了,复杂而恰当的系统发育方法应该得到更多的重视,特别是这些方法集中于研究位点和谱系的组成异质性,以及异速进化问题。目前,新出现的具有许多真核生物特征的古菌谱系,如膜运输和细胞区室化,在系统发育上与真核生物最为接近。这些发现突出了从古老的古菌到具有原真核生物特征和复杂细胞结构的更复杂古菌的进化历史,从而为理解真核生物起源过程提供了线索。不断增加的精确基因组内容谱提供了很大的优势,可以帮助我们理解生命之树的深层系统发育和真核生物分支过程中的古代进化事件。

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