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Photorespiration Enhances Acidification of the Thylakoid Lumen Reduces the Plastoquinone Pool and Contributes to the Oxidation of P700 at a Lower Partial Pressure of CO2 in Wheat Leaves

机译:光呼吸增强了类囊体腔的酸化减少了醌醌库并在较低的二氧化碳分压下促进了小麦叶片中P700的氧化

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摘要

The oxidation of P700 in photosystem I (PSI) is a robust mechanism that suppresses the production of reactive oxygen species. We researched the contribution of photorespiration to the oxidation of P700 in wheat leaves. We analyzed the effects of changes in partial pressures of CO and O on photosynthetic parameters. The electron flux in photosynthetic linear electron flow (LEF) exhibited a positive linear relationship with an origin of zero against the dissipation rate (vH ) of electrochromic shift (ECS; ΔpH across thylakoid membrane), indicating that cyclic electron flow around PSI did not contribute to H usage in photosynthesis/photorespiration. The vH showed a positive linear relationship with an origin of zero against the H consumption rates in photosynthesis/photorespiration (JgH ). These two linear relationships show that the electron flow in LEF is very efficiently coupled with H usage in photosynthesis/photorespiration. Lowering the intercellular partial pressure of CO enhanced the oxidation of P700 with the suppression of LEF. Under photorespiratory conditions, the oxidation of P700 and the reduction of the plastoquinone pool were stimulated with a decrease in JgH , compared to non-photorespiratory conditions. These results indicate that the reduction-induced suppression of electron flow (RISE) suppresses the reduction of oxidized P700 in PSI under photorespiratory conditions. Furthermore, under photorespiratory conditions, ECS was larger and H conductance was lower against JgH than those under non-photorespiratory conditions. These results indicate that photorespiration enhances RISE and ΔpH formation by lowering H conductance, both of which contribute to keeping P700 in a highly oxidized state.
机译:光系统I(PSI)中P700的氧化是一种抑制活性氧生成的强大机制。我们研究了光呼吸对小麦叶片中P700氧化的贡献。我们分析了CO和O分压变化对光合参数的影响。光合线性电子流(LEF)中的电子通量与零起点相对于电致变色耗散率(vH)(ECS;类囊体膜上的ΔpH)呈正线性关系,表明PSI周围的循环电子流没有贡献在光合作用/光呼吸中的氢含量vH与光合作用/光呼吸(JgH)中的H消耗率之间呈正线性关系,其起点为零。这两个线性关系表明,LEF中的电子流与光合作用/光呼吸中的H利用率非常有效。降低CO的细胞间分压可增强P700的氧化并抑制LEF。与非光呼吸条件相比,在光呼吸条件下,JgH降低可刺激P700氧化和质体醌库减少。这些结果表明,在光呼吸条件下,还原诱导的电子流抑制(RISE)抑制了PSI中氧化P700的还原。此外,在光呼吸条件下,对JgH的ECS较大,而H电导率比在非光呼吸条件下低。这些结果表明,光呼吸通过降低H电导来增强RISE和ΔpH的形成,这两者都有助于将P700保持在高度氧化状态。

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