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Mitochondrial energy and redox signaling in plants

机译:植物线粒体能量和氧化还原信号

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Significance: For a plant to grow and develop, energy and appropriate building blocks are a fundamental requirement. Mitochondrial respiration is a vital source for both. The delicate redox processes that make up respiration are affected by the plant's changing environment. Therefore, mitochondrial regulation is critically important to maintain cellular homeostasis. This involves sensing signals from changes in mitochondrial physiology, transducing this information, and mounting tailored responses, by either adjusting mitochondrial and cellular functions directly or reprogramming gene expression. Recent Advances: Retrograde (RTG) signaling, by which mitochondrial signals control nuclear gene expression, has been a field of very active research in recent years. Nevertheless, no mitochondrial RTG-signaling pathway is yet understood in plants. This review summarizes recent advances toward elucidating redox processes and other bioenergetic factors as a part of RTG signaling of plant mitochondria. Critical Issues: Novel insights into mitochondrial physiology and redox-regulation provide a framework of upstream signaling. On the other end, downstream responses to modified mitochondrial function have become available, including transcriptomic data and mitochondrial phenotypes, revealing processes in the plant that are under mitochondrial control. Future Directions: Drawing parallels to chloroplast signaling and mitochondrial signaling in animal systems allows to bridge gaps in the current understanding and to deduce promising directions for future research. It is proposed that targeted usage of new technical approaches, such as quantitative in vivo imaging, will provide novel leverage to the dissection of plant mitochondrial signaling.
机译:启示:对于植物的成长和发展,能源和适当的构件是基本要求。线粒体呼吸是两者的重要来源。构成呼吸的精细氧化还原过程受植物不断变化的环境影响。因此,线粒体调节对于维持细胞稳态至关重要。这涉及通过直接调节线粒体和细胞功能或重新编程基因表达,从线粒体生理变化中感应信号,转导该信息并建立定制的响应。最新进展:近年来,逆转录(RTG)信号通过线粒体信号控制核基因表达,已经成为非常活跃的研究领域。然而,植物中尚无线粒体RTG信号通路。这篇综述总结了阐明氧化还原过程和其他生物能因素作为植物线粒体RTG信号的一部分的最新进展。关键问题:对线粒体生理学和氧化还原调节的新颖见解提供了上游信号传导的框架。另一方面,对修饰的线粒体功能的下游反应已经可用,包括转录组数据和线粒体表型,揭示了植物中处于线粒体控制之下的过程。未来方向:在动物系统中与叶绿体信号传导和线粒体信号传导相似,可以弥合当前理解的空白,并为未来的研究提供有希望的方向。提出有针对性地使用诸如定量体内成像的新技术方法,将为解剖植物线粒体信号提供新的杠杆作用。

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