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首页> 外文期刊>Photosynthesis Research: An International Journal >Photorespiration is complemented by cyclic electron flow and the alternative oxidase pathway to optimize photosynthesis and protect against abiotic stress
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Photorespiration is complemented by cyclic electron flow and the alternative oxidase pathway to optimize photosynthesis and protect against abiotic stress

机译:循环电子流量和替代氧化酶途径的光孔辅以优化光合作用并防止非生物应激

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摘要

Optimization of photosynthetic performance and protection against abiotic stress are essential to sustain plant growth. Photorespiratory metabolism can help plants to adapt to abiotic stress. The beneficial role of photorespiration under abiotic stress is further strengthened by cyclic electron flow (CEF) and alternative oxidase (AOX) pathways. We have attempted to critically assess the literature on the responses of these three phenomenaphotorespiration, CEF and AOX, to different stress situations. We emphasize that photorespiration is the key player to protect photosynthesis and upregulates CEF as well as AOX. Then these three processes work in coordination to protect the plants against photoinhibition and maintain an optimal redox state in the cell, while providing ATP for metabolism and protein repair. H2O2 generated during photorespiratory metabolism seems to be an important signal to upregulate CEF or AOX. Further experiments are necessary to identify the signals originating from CEF or AOX to modulate photorespiration. The mutants deficient in CEF or AOX or both could be useful in this regard. The mutual interactions between CEF and AOX, so as to keep their complementarity, are also to be examined further.
机译:优化光合性能和免受非生物胁迫的保护对于维持植物生长至关重要。光致潮代谢可以帮助植物适应非生物胁迫。通过循环电子流(CEF)和替代氧化酶(AOX)途径进一步增强了光致抑菌在非生物应激下的有益作用。我们试图批判性地评估这三个现象的反应,CEF和AOX对不同的压力情况。我们强调,光呼吸是保护光合作用和上调CEF以及AOX的关键球员。然后,这三个过程协调,以保护植物免受光煅烧,并在细胞中保持最佳的氧化还原状态,同时提供ATP进行代谢和蛋白质修复。在光致前进剂期间产生的H2O2似乎是令人满意的CEF或AOX的重要信号。需要进一步的实验来识别源自CEF或AOX的信号以调节光呼吸。缺乏CEF或AOX或两者的突变体在这方面有用。 CEF和AOX之间的相互相互作用,以便继续进行互补性。

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