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A chimeric prokaryotic ancestry of mitochondria and primitive eukaryotes

机译:线粒体和原始真核生物的嵌合原核祖先

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摘要

We provide data and analysis to support the hypothesis that the ancestor of animal mitochondria (Mt) and many primitive amitochondrial (a-Mt) eukaryotes was a fusion microbe composed of a Clostridium-like eubacterium and a Sulfolobus-Iike archaebacterium. The analysis is based on several observations: (i) The genome signatures (dinucleotide relative abundance values) of Clostridium and Suifolobus are compatible (sufficiently similar) and each has significantly more similarity in genome signatures with auimal Mt sequences than do all other available prokaryotes. That stable fusions may require compatibility in genome signatures is suggested by the compatibility of plasmids and hosts. (ii) The expanded energy metabolism of the fusion organism was strongly selective for cementing such a fusion. (iii) The molecular apparatus of endospore formation in Clostridium serves as raw material for the development of the nucleus and cytoplasm of the eukaryotic cell.
机译:我们提供数据和分析,以支持动物线粒体(Mt)和许多原始线粒体(a-Mt)真核生物的祖先是由梭状芽孢杆菌真细菌和Sulfolobus-Iike细菌组成的融合微生物的假说。该分析基于以下观察结果:(i)梭状芽胞杆菌和Su虫的基因组特征(双核苷酸相对丰度值)是兼容的(足够相似),并且与所有其他原核生物相比,它们在具有正常Mt序列的基因组特征上具有更大的相似性。质粒和宿主的相容性表明,稳定的融合可能需要在基因组签名中具有相容性。 (ii)融合生物体扩展的能量代谢对于巩固这种融合具有强烈的选择性。 (iii)梭状芽胞杆菌内生孢子形成的分子装置用作真核细胞核和细胞质发育的原料。

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