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Effects of Temperature Pretreatment in the Dark on Photosynthesis of the Intact Spinach Chloroplast

机译:黑暗中温度预处理对完整菠菜叶绿体光合作用的影响

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摘要

Isolated, intact spinach (Spinacia oleracea L. var. “Long Standing Bloomsdale”) chloroplasts were heated in the dark and the effect of this treatment on photosynthetic activities was determined at 25°C. Dark incubation of the chloroplasts for 10 minutes at 35°C and pH 8.1 resulted in a 50% decline in CO2 photoassimilation. This decline in photosynthetic performance was dependent upon time, temperature, and medium pH with the optimum effect at acidic pH values. Photosynthetic decline was not observed if MgATP, MgADP, or a mixture of fructose 1,6-bisphosphate, aldolase, and oxaloacetate or ribose 5-phosphate and oxaloacetate was added prior to but not after the temperature pretreatment. A chloroplast preparation reconstituted with thylakoids and stroma from pretreated (35°C, 10 minutes, pH 8.1) intact chloroplasts and supplemented with ferredoxin, ADP, and NADP was photosynthetically competent, indicating that ATP-coupled electron flow and the enzymes comprising the Benson-Calvin cycle remained stable during the dark treatment. In contrast, exposure of isolated thylakoids to 35°C for 10 minutes uncoupled photophosphorylation from NADP and ferricyanide reduction. We propose that the decline of intact chloroplast photosynthesis is the result of a decrease in the content of or a change in the ratios of the adenine nucleotides. Maintenance of an adequate supply of adenine nucleotide is the effect of the externally added MgATP or of chloroplastic respiration of a sugar phosphate.
机译:在黑暗中加热分离的完整菠菜(Spinacia oleracea L. var。“ Long Standing Bloomsdale”),并在25℃下测定该处理对光合作用的影响。在35°C和pH值8.1的条件下,叶绿体黑暗孵育10分钟会导致CO2光同化作用降低50%。光合性能的下降取决于时间,温度和中等pH,在酸性pH值下效果最佳。如果在温度预处理之前而不是在温度预处理之后添加MgATP,MgADP或果糖1,6-双磷酸,醛缩酶和草酰乙酸的混合物或5-磷酸核糖和草酰乙酸的混合物,则未观察到光合作用下降。叶绿体制剂由类囊体和基质(经预处理(35°C,10分钟,pH 8.1)完整叶绿体重构,并补充铁氧还蛋白,ADP和NADP)具有光合作用,表明ATP耦合电子流和包含Benson-在黑暗处理期间,卡尔文循环保持稳定。相反,将分离的类囊体暴露于35°C 10分钟可消除NADP的光磷酸化作用和铁氰化物还原反应。我们认为完整的叶绿体光合作用的下降是腺嘌呤核苷酸含量降低或比率变化的结果。外部腺苷酸MgATP或糖磷酸酯的叶绿体呼吸的作用是维持腺嘌呤核苷酸的充足供应。

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