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The Very Early Stages of Biological Evolution and the Nature of the Last Common Ancestor of the Three Major Cell Domains

机译:生物进化的非常早期阶段和三个主要细胞域的最后共同祖先的性质

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Quantitative^stimates of the gene complement of the last common ancestor of all extant organisms, that is, the cenancestor, may be hindered by ancient horizontal gene transfer events and poly-phyletic gene losses, as well as by biases in genome databases and methodological artifacts. Nevertheless, most reports agree that the last common ancestor resembled extant prokaryotes. A significant number of the highly conserved genes are sequences involved in the synthesis, degradation, and binding of RNA, including transcription and translation. Although the gene complement of the cenancestor includes sequences that may have originated in different epochs, the extraordinary conservation of RNA-related sequences supports the hypothesis that the last common ancestor was an evolutionary outcome of the so-called RNA/protein world. The available evidence suggests that the cenancestor was not a hyperthermophile, but it is currently not possible to assess its ecological niche or its mode of energy acquisition and carbon sources.
机译:所有现存生物的最后共同祖先(即祖先)的基因补体的定量刺激可能受到古代水平基因转移事件和多系基因损失以及基因组数据库和方法学假象的偏见的阻碍。尽管如此,大多数报道都认为最后的祖先类似于现存的原核生物。大量高度保守的基因是涉及RNA合成,降解和结合(包括转录和翻译)的序列。尽管先人的基因补体包括可能起源于不同时期的序列,但RNA相关序列的非凡保守性支持了这样一个假设,即最后一个共同祖先是所谓的RNA /蛋白质世界的进化产物。现有证据表明,审查人不是嗜热菌,但目前尚无法评估其生态位或能源获取方式和碳源方式。

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