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In planta study of photosynthesis and photorespiration using NADPH and NADH/NAD fluorescent protein sensors

机译:在Planta研究光合作用和使用NADH / NADH / NAD荧光蛋白传感器的光合作用

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摘要

The challenge of monitoring in planta dynamic changes of NADP(H) and NAD(H) redox states at the subcellular level is considered a major obstacle in plant bioenergetics studies. Here, we introduced two circularly permuted yellow fluorescent protein sensors, iNAP and SoNar, into Arabidopsis thaliana to monitor the dynamic changes in NADPH and the NADH/NAD ratio. In the light, photosynthesis and photorespiration are linked to the redox states of NAD(P)H and NAD(P) pools in several subcellular compartments connected by the malate-OAA shuttles. We show that the photosynthetic increases in stromal NADPH and NADH/NAD ratio, but not ATP, disappear when glycine decarboxylation is inhibited. These observations highlight the complex interplay between chloroplasts and mitochondria during photosynthesis and support the suggestions that, under normal conditions, photorespiration supplies a large amount of NADH to mitochondria, exceeding its NADH-dissipating capacity, and the surplus NADH is exported from the mitochondria to the cytosol through the malate-OAA shuttle.
机译:在亚细胞水平下NADP(H)和NAD(H)氧化还原态的植物动态变化监测的挑战被认为是植物生物植物研究的主要障碍。在这里,我们介绍了两个圆形允许的黄色荧光蛋白传感器,Inap和Sonar,进入拟南芥拟南芥,以监测NADPH和NADH / NAD比率的动态变化。在光线上,光合作用和光素与NAD(P)H和NAD(P)池中的氧化还原态与由苹果醛-OAA梭子连接的几个亚细胞室中的氧池组合。我们表明,当甘氨酸脱羧被抑制时,基质NADPH和NADH / NAD比例的光合作用增加,但没有ATP消失。这些观察结果突出了光合作用期间叶绿体和线粒体之间的复杂相互作用,并支持在正常条件下的建议,光素向线粒体提供大量NADH,超过其NADH消散能力,并且剩余的NADH从线粒体出口到细胞溶溶胶穿过马尔特-OAA班车。

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