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The Rf and Rf-like PPR in higher plants, a fast-evolving subclass of PPR genes

机译:高等植物中的Rf和Rf样PPR,PPR基因的快速进化子类

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In the last years, a number of nuclear genes restoring cytoplasmic male sterility (CMS) have been cloned in various crop species. The majority of these genes have been shown to encode pentatricopeptide repeat proteins (PPR) that act by specifically suppressing the expression of sterility-causing mitochondrial transcripts. Functional analysis of these proteins has indicated that the inhibitory effects of restoring PPR (Rf-PPR) proteins involve various mechanisms, including RNA cleavage, RNA destabilization, or translation inhibition. Cross-species sequence comparison of PPR protein complements revealed that most plant genomes encode 10-30 Rf-like (RFL) proteins sharing high-sequence similarity with the identified Rf-PPRs from crops. Evolutionary analyses further showed that they constitute a monophyletic group apart in the PPR family, with peculiar evolution dynamic and constraints. Here we review recent data on RF-PPRs and present the latest discoveries on the RFL family, with prospects on the functionality and evolution of this peculiar subclass of PPR.
机译:近年来,已在多种农作物中克隆了许多恢复细胞质雄性不育(CMS)的核基因。这些基因中的大多数已显示出编码五肽重复序列蛋白(PPR),该蛋白通过特异性抑制不育性线粒体转录物的表达来发挥作用。这些蛋白质的功能分析表明,恢复PPR(Rf-PPR)蛋白质的抑制作用涉及多种机制,包括RNA裂解,RNA不稳定或翻译抑制。 PPR蛋白补体的跨物种序列比较显示,大多数植物基因组编码10-30个Rf-like(RFL)蛋白,与从农作物中鉴定出的Rf-PPRs具有高度的序列相似性。进化分析进一步表明,它们构成了PPR家族中一个单一的群体,具有独特的进化动力学和约束条件。在这里,我们回顾了有关RF-PPR的最新数据,并介绍了RFL系列的最新发现,并展望了这种PPR特殊子类的功能和发展。

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