The role of alternative electron pathways in the photosynthetic chain in higher plants

Q3 Medicine
Aleksandra Urban, Marta Galas, Paweł Rogowski
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引用次数: 0

Abstract

Light-dependent reactions of photosynthesis takes place in the thylakoids of chloroplasts where light energy harvested from the sun drives the synthesis of ATP and NADPH. The major pathway of photosynthetic chain is the linear electron transport (LET), in which both photosystems (PSI and PSII) are involved, and ATP and NADPH are produced. However, ratio in production of those components is insufficient to cover the Calvin cycle energy requirements, depending on the metabolism of the cell. Moreover, disturbance in metabolism homeostasis, caused by environmental stress conditions, increases ATP demand, which cannot be covered by LET. Thus, in photosynthetic apparatus must exist alternative electron transport pathways, these include: cyclic electron transport (CET) mediated by NDH complex or PGR5/PGRL1 proteins, water-water cycle and PTOX enzyme. Activity of alternative pathways can optimize ratio in production of ATP/NADPH, appropriately to requirements, which allows to achieve redox balance and ATP contents.
高等植物光合链中可选电子通路的作用
光合作用的光依赖反应发生在叶绿体的类囊体中,在那里从太阳获得的光能驱动ATP和NADPH的合成。光合链的主要途径是线性电子传递(LET),其中涉及两个光系统(PSI和PSII),并产生ATP和NADPH。然而,这些成分的生产比例不足以满足卡尔文循环的能量需求,这取决于细胞的新陈代谢。此外,由环境应激条件引起的代谢稳态紊乱会增加ATP需求,而这是LET无法覆盖的。因此,在光合机构中必须存在多种电子传递途径,包括:NDH复合物或PGR5/PGRL1蛋白介导的循环电子传递(CET)、水循环和PTOX酶。替代途径的活性可以优化ATP/NADPH的生产比例,使其符合要求,从而实现氧化还原平衡和ATP含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Postepy biochemii
Postepy biochemii Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
36
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