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高等植物中通过激活铁氧还蛋白-NADP(+)氧化还原酶来调节暗-光转换中的光合电子传递。

Regulation of the photosynthetic electron transport during dark-light transitions by activation of the ferredoxin-NADP(+)-oxidoreductase in higher plants.

机构信息

Institut für Allgemeine Botanik, Saarstr. 21, D-6500, Mainz, Federal Republic of Germany.

出版信息

Photosynth Res. 1987 Jan;11(2):161-71. doi: 10.1007/BF00018274.

Abstract

Absorbance changes associated with the oxidation and reduction of cytochrome f belong to the classical observations about the interaction of the two photosystems. A complex induction pattern of cytochrome f oxidation results, if both photosystems are excited simultaneously. This indicates a light-modulated regulation of the photosynthetic electron transport, which we examined for intact biological systems of decreasing complexity. The ferredoxin-NADP(+)-oxidoreductase (FNR) is suggested to be activated by light and inactivated in the dark. This is pointed out by the kinetics of variable fluorescence and by the influence of different artificial electron acceptors on the cytochrome f kinetics. The photoreduction of NADP(+) by carefully prepared thylakoids demonstrates the activation process directly.

摘要

与细胞色素 f 的氧化和还原相关的吸光度变化属于关于两个光系统相互作用的经典观察。如果两个光系统同时被激发,会产生细胞色素 f 氧化的复杂诱导模式。这表明光合作用电子传递受到光调节的调控,我们为不断简化的完整生物系统进行了检查。铁氧还蛋白-NADP(+)氧化还原酶 (FNR) 被认为是受光激活和在黑暗中失活的。这一点可以通过可变荧光的动力学和不同人工电子受体对细胞色素 f 动力学的影响来指出。通过仔细制备的类囊体进行的 NADP(+)光还原直接证明了激活过程。

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