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Anterograde and Retrograde Regulation of Nuclear Genes Encoding Mitochondrial Proteins during Growth, Development, and Stress

机译:生长,发育和应激过程中编码线粒体蛋白的核基因的顺行和逆行调控。

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Mitochondrial biogenesis and function in plants require the expression of over 1000 nuclear genes encoding mitochondrial proteins (NGEMPs). The expression of these genes is regulated by tissue-specific, developmental, internal, and external stimuli that result in a dynamic organelle involved in both metabolic and a variety of signaling processes. Although the metabolic and biosynthetic machinery of mitochondria is relatively well understood, the factors that regulate these processes and the various signaling pathways involved are only beginning to be identified at a molecular level. The molecular components of anterograde (nuclear to mitochondrial) and retrograde (mitochondrial to nuclear) signaling pathways that regulate the expression of NGEMPs interact with chloroplast-, growth-, and stress-signaling pathways in the cell at a variety of levels, with common components involved in transmission and execution of these signals. This positions mitochondria as important hubs for signaling in the cell, not only in direct signaling of mitochondrial function per se, but also in sensing and/or integrating a variety of other internal and external signals. This integrates and optimizes growth with energy metabolism and stress responses, which is required in both photosynthetic and non-photosynthetic cells.
机译:植物线粒体的生物发生和功能需要表达编码线粒体蛋白(NGEMPs)的1000多个核基因。这些基因的表达受组织特异性,发育,内部和外部刺激的调节,这些刺激导致动态细胞器参与代谢和各种信号传导过程。尽管对线粒体的代谢和生物合成机制了解得比较清楚,但调节这些过程和涉及的各种信号通路的因素才刚刚在分子水平上被鉴定出来。调节NGEMPs表达的顺行(核到线粒体)和逆行(线粒体到核)信号通路的分子成分与细胞中的叶绿体,生长和应激信号通路在各种水平上相互作用,并具有共同的组分参与这些信号的传输和执行。这将线粒体定位为细胞中信号传导的重要枢纽,不仅在线粒体功能本身的直接信号传导中,而且在传感和/或整合各种其他内部和外部信号中。这整合并优化了能量代谢和应激反应的生长,这是光合作用和非光合作用细胞都需要的。

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