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首页> 外文期刊>Trends in Plant Science >An evolutionary puzzle: chloroplast and mitochondrial division rings [Review]
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An evolutionary puzzle: chloroplast and mitochondrial division rings [Review]

机译:一个进化难题:叶绿体和线粒体分裂环[评论]

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Consistent with their bacterial origin, chloroplasts and primitive mitochondria retain a FtsZ ring for division. However, chloroplasts and mitochondria have lost most of the proteins required for bacterial division other than FtsZ and certain homologues of the Min proteins, but they do contain plastid and mitochondrion dividing rings, which were recently shown to be distinct from the FtsZ ring. Moreover, recent studies have revealed that rings of the eukaryote-specific dynamin-related family of GTPases regulate the division of chloroplasts and mitochondria, and these proteins emerged early in eukaryotic evolution. These findings suggest that the division of chloroplasts and primitive mitochondria involve very similar systems, consisting of an amalgamation of rings from bacteria and eukaryotes.
机译:与它们的细菌起源一致,叶绿体和原始线粒体保留了一个FtsZ环用于分裂。然而,除了FtsZ和Min蛋白的某些同源物以外,叶绿体和线粒体已经丧失了细菌分裂所需的大多数蛋白质,但是它们确实含有质体和线粒体分隔环,最近发现它们与FtsZ环不同。此外,最近的研究表明,与真核生物相关的,与发电机动力学相关的GTPases家族的环调控叶绿体和线粒体的分裂,并且这些蛋白质在真核生物进化的早期出现。这些发现表明,叶绿体和原始线粒体的分裂涉及非常相似的系统,包括细菌和真核生物的环的合并。

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