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Mitochondrial Transcriptome Control and Intercompartment Cross-Talk During Plant Development

机译:植物发育过程中的线粒体转录组控制和区际对话。

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摘要

We address here organellar genetic regulation and intercompartment genome coordination. We developed earlier a strategy relying on a tRNA-like shuttle to mediate import of nuclear transgene-encoded custom RNAs into mitochondria in plants. In the present work, we used this strategy to drive trans-cleaving hammerhead ribozymes into the organelles, to knock down specific mitochondrial RNAs and analyze the regulatory impact. In a similar approach, the tRNA mimic was used to import into mitochondria in Arabidopsis thaliana the orf77, an RNA associated with cytoplasmic male sterility in maize and possessing sequence identities with the atp9 mitochondrial RNA. In both cases, inducible expression of the transgenes allowed to characterise early regulation and signaling responses triggered by these respective manipulations of the organellar transcriptome. The results imply that the mitochondrial transcriptome is tightly controlled by a “buffering” mechanism at the early and intermediate stages of plant development, a control that is released at later stages. On the other hand, high throughput analyses showed that knocking down a specific mitochondrial mRNA triggered a retrograde signaling and an anterograde nuclear transcriptome response involving a series of transcription factor genes and small RNAs. Our results strongly support transcriptome coordination mechanisms within the organelles and between the organelles and the nucleus.
机译:我们在这里讨论细胞器遗传调控和室间基因组协调。我们较早地开发了一种策略,该策略依赖于类似tRNA的穿梭介导核转基因编码的定制RNA导入植物线粒体。在目前的工作中,我们使用这种策略来驱动锤头状核酶的反式切割进入细胞器,敲除特定的线粒体RNA并分析其调控作用。通过类似的方法,使用tRNA模拟物将orf77导入拟南芥的线粒体,orf77是一种与玉米细胞质雄性不育有关的RNA,与atp9线粒体RNA具有序列同一性。在这两种情况下,转基因的可诱导表达都可以表征早期调控和信号响应,这些调控是由细胞器转录组的这些相应操纵触发的。结果表明,线粒体转录组在植物发育的早期和中期受到“缓冲”机制的严格控制,而该控制则在后期阶段释放。另一方面,高通量分析表明,敲除特定的线粒体mRNA会触发逆行信号传导和顺行核转录组反应,涉及一系列转录因子基因和小RNA。我们的研究结果强烈支持细胞器内以及细胞器与细胞核之间的转录组协调机制。

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