首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Early-branching or fast-evolving eukaryotes? An answer based on slowly evolving positions.
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Early-branching or fast-evolving eukaryotes? An answer based on slowly evolving positions.

机译:早期分支还是快速发展的真核生物?根据职位逐渐演变的答案。

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摘要

The current paradigm of eukaryotic evolution is based primarily on comparative analysis of ribosomal RNA sequences. It shows several early-emerging lineages, mostly amitochondriate, which might be living relics of a progressive assembly of the eukaryotic cell. However, the analysis of slow-evolving positions, carried out with the newly developed slow-fast method, reveals that these lineages are, in terms of nucleotide substitution, fast-evolving ones, misplaced at the base of the tree by a long branch attraction artefact. Since the fast-evolving groups are not always the same, depending on which macromolecule is used as a marker, this explains most of the observed incongruent phylogenies. The current paradigm of eukaryotic evolution thus has to be seriously re-examined as the eukaryotic phylogeny is presently best summarized by a multifurcation. This is consistent with the Big Bang hypothesis that all extant eukaryotic lineages are the result of multiple cladogeneses within a relatively brief period, although insufficiency of data is also a possible explanation for the lack of resolution. For further resolution, rare evolutionary events such as shared insertions and/or deletions or gene fusions might be helpful.
机译:当前的真核生物进化模式主要基于核糖体RNA序列的比较分析。它显示了几个早期出现的谱系,主要是线粒体,可能是真核细胞进行性装配的活体遗物。然而,用新开发的慢速-快慢法进行的慢速进化位点分析显示,这些谱系在核苷酸取代方面是快速进化的谱系,由于长的分支吸引而错位在树的底部人工制品。由于快速进化的基团并不总是相同的,这取决于使用哪个大分子作为标记,这解释了大多数观察到的不一致系统发育。因此,必须认真地重新审查当前的真核生物进化模式,因为目前最好通过多分支来总结真核生物系统发育。这与“大爆炸”假说是一致的,尽管所有数据不足也是缺乏分辨率的一个可能的解释,但所有现存的真核生物谱系都是在相对较短的时间内多个分支发生的结果。为了进一步解决,罕见的进化事件,例如共享的插入和/或缺失或基因融合可能会有所帮助。

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