光防护
电子传输链
光系统II
光系统I
光合作用
叶绿体
电子流
生物物理学
光系统
细胞色素b6f复合物
700页
化学
光化学
生物
生物化学
基因
标识
DOI:10.1146/annurev.arplant.58.091406.110525
摘要
The light reactions in photosynthesis convert light energy into chemical energy in the form of ATP and drive the production of NADPH from NADP+. The reactions involve two types of electron flow in the chloroplast. While linear electron transport generates both ATP and NADPH, photosystem I cyclic electron transport is exclusively involved in ATP synthesis. The physiological significance of photosystem I cyclic electron transport has been underestimated, and our knowledge of the machineries involved remains very limited. However, recent genetic approaches using Arabidopsis thaliana have clarified the essential functions of this electron flow in both photoprotection and photosynthesis. Based on several lines of evidence presented here, it is necessary to reconsider the fundamental mechanisms of chloroplast energetics.
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