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Plastid mRNAs are neither spliced nor edited in maize and cauliflower mitochondrial in organello systems

机译:质子系统中玉米和花椰菜线粒体中的质体mRNA既不被剪接也不被编辑

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摘要

The process of RNA editing in chloroplasts and higher plant mitochondria displays some similarities, raising the question of common or similar components in editing apparatus of these two organelles. To investigate the ability of plant mitochondria to edit plastid transcripts, we employed a previously established mitochondrial maize and cauliflower in organello system. Two plastid genes, Zea mays ndhB and ycf3 containing group II introns and several editing sites, were introduced into mitochondria. The genes were transcribed in organello. However, these transcripts of the plastid genes are neither spliced nor edited in plant mitochondria. A comparison of maize ndhB editing sites and maize mitochondrial editing sites reveals considerable sequence similarities between three ndhB editing sites and several mitochondrial sites. Nevertheless, these ndhB editing sites were not recognized in the mitochondria. Thus, we present for the first time direct evidence that the factors present in the plant mitochondria are not sufficient to allow editing and splicing of plastid transcripts.
机译:叶绿体和高等植物线粒体中RNA的编辑过程显示出一些相似之处,从而提出了在这两个细胞器的编辑装置中共有或相似组件的问题。为了研究植物线粒体编辑质体转录本的能力,我们在organello系统中采用了先前建立的线粒体玉米和花椰菜。线粒体中引入了两个质体基因,即含有第II组内含子的玉米(Zea mays)ndhB和ycf3基因和几个编辑位点。这些基因在器皿中转录。但是,质体基因的这些转录本既不剪接也不在植物线粒体中编辑。玉米ndhB编辑位点和玉米线粒体编辑位点的比较显示了三个ndhB编辑位点和几个线粒体位点之间的相当的序列相似性。但是,这些ndhB编辑位点在线粒体中未被识别。因此,我们首次提出直接证据,证明植物线粒体中存在的因子不足以允许编辑和剪接质体转录物。

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