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首页> 外文期刊>Mitochondrion >Photosynthesis, respiration and growth: A carbon and energy balancing act for alternative oxidase
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Photosynthesis, respiration and growth: A carbon and energy balancing act for alternative oxidase

机译:光合作用,呼吸和生长:替代氧化酶的碳和能量平衡行为

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摘要

This review summarizes knowledge of alternative oxidase, a mitochondrial electron transport chain component that lowers the ATP yield of plant respiration. Analysis of mutant and transgenic plants has established that alternative oxidase activity supports leaf photosynthesis. The interaction of alternative oxidase respiration with chloroplast metabolism is important under conditions that challenge energy and/or carbon balance in the photosynthetic cell. Under such conditions, alternative oxidase provides an extra-chloroplastic means to optimize the status of chloroplast energy pools (ATP, NADPH) and to manage cellular carbohydrate pools in response to changing rates of carbon fixation and carbon demand for growth and maintenance. Transcriptional and post-translational mechanisms ensure that alternative oxidase can respond effectively when carbon and energy balance are being challenged. This function appears particularly significant under abiotic stress conditions such as water deficit, high salinity, or temperature extremes. Under such conditions, alternative oxidase respiration positively affects growth and stress tolerance, despite it lowering the energy yield and carbon use efficiency of respiration. In part, this beneficial effect relates to the ability of alternative oxidase respiration to prevent excessive reactive oxygen species generation in both mitochondria and chloroplasts. Recent evidence suggests that alternative oxidase respiration is an interesting target for crop improvement.
机译:本综述总结了对替代氧化酶的知识,线粒体电子传输链组分降低了植物呼吸的ATP产量。突变体和转基因植物的分析已经确定了替代氧化酶活性支持叶片光合作用。替代氧化酶呼吸与叶绿体代谢的相互作用在攻击光合细胞中的能量和/或碳平衡的条件下是重要的。在这种条件下,替代氧化酶提供了一种超氯塑料,以优化叶绿体能量池(ATP,NADPH)的状态,并响应于碳固定和碳需求对生长和维护的碳需求的变化来管理细胞碳水化合物库。转录和翻译后机制确保当碳和能量平衡受到挑战时,替代氧化酶可以有效地响应。这种功能在非生物胁迫条件下特别显着,例如水缺水,高盐度或极端温度。在这种条件下,尽管它降低了呼吸的能量产量和碳利效率,但替代氧化酶呼吸肯定会影响生长和胁迫耐受性。部分地,这种有益效果涉及替代氧化酶呼吸以防止在线粒体和叶绿体中产生过量的反应性氧物种的能力。最近的证据表明,替代氧化酶呼吸是作物改善的有趣目标。

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