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Photoinhibition of Photosynthesis in Broken Chloroplasts as a Function of Electron Transfer Rates during Light Treatment

机译:光处理过程中破碎叶绿体中光合作用的光抑制作用与电子传输速率的关系

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摘要

Photoinhibition was studied in osmotically broken chloroplasts isolated from spinach leaves (Spinacia oleracea L.). Both whole chain electron transport (measured as ferricyanide-dependent O2 evolution in the presence of NH4Cl) and photosystem II activity (measured as O2 evolution in the presence of either silicomolybdate plus 3-(3,4-diphenyl)-1,1 dimethylurea or parabenzoquinone) showed similar decreases in activity in response to a photoinhibitory treatment (8 minutes of high light given in the absence of an electron acceptor other than O2). Photosystem I activity was less affected. Photoinhibition of silicomolybdate reduction was largely reversible by an 8 minute dark incubation following the light treatment. Decreasing the O2 concentration during photoinhibition below 2% increased photoinhibition of whole chain electron transport. Addition of superoxide dismutase to the reaction medium did not affect photoinhibition. Photoinhibition of both photosystem I and photosystem II activity increased as the rate of electron transfer during the treatment increased, and was largely prevented when 3-(3,4-diphenyl)-1,1-dimethylurea was present during the photoinhibition period. Noncyclic photophosphorylation was decreased as a consequence of whole chain electron transfer photoinhibition. Since diphenyl carbazide added after light treatment did not relieve photoinhibition of dichlorophenol indophenol reduction, we conclude that the site of inhibition is located within or near the photosystem II reaction center.
机译:在从菠菜叶(Spinacia oleracea L.)分离的渗透破碎的叶绿体中研究了光抑制作用。全链电子传输(在NH4Cl存在下以铁氰化物依赖性O2的形式测定)和光系统II活性(在硅钼酸盐加3-(3,4-二苯基)-1,1二甲基脲或对苯醌)在光抑制处理(在没有除O2以外没有电子受体的情况下发出8分钟的强光)下表现出相似的活性降低。 Photosystem I的活动受到的影响较小。在光处理后,通过8分钟的黑暗温育,硅钼酸盐还原的光抑制作用在很大程度上是可逆的。将光抑制过程中的O2浓度降低到2%以下会增加全链电子传输的光抑制作用。向反应介质中添加超氧化物歧化酶不影响光抑制。随着处理过程中电子转移速率的增加,光系统I和光系统II活性的光抑制均增加,并且在光抑制期间存在3-(3,4-二苯基)-1,1-二甲基脲时,很大程度上可以防止光抑制。非环状光磷酸化由于全链电子转移光抑制而降低。由于光处理后添加的二苯卡巴肼不能减轻二氯苯酚吲哚酚还原的光抑制作用,因此我们得出的结论是,抑制位点位于光系统II反应中心内或附近。

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