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首页> 外文期刊>Photosynthesis Research >Application of low temperatures during photoinhibition allows characterization of individual steps in photodamage and the repair of photosystem II
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Application of low temperatures during photoinhibition allows characterization of individual steps in photodamage and the repair of photosystem II

机译:在光抑制过程中施加低温可以表征光损伤和光系统II修复的各个步骤

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Recent investigations of photoinhibition have revealed that photodamage to photosystem II (PSII) involves two temporally separated steps: the first is the inactivation of the oxygen-evolving complex by light that has been absorbed by the manganese cluster and the second is the impairment of the photochemical reaction center by light that has been absorbed by chlorophyll. Our studies of photoinhibition in Synechocystis sp. PCC 6803 at various temperatures demonstrated that the first step in photodamage is not completed at low temperatures, such as 10°C. Further investigations suggested that an intermediate state, which is stabilized at low temperatures, might exist at the first stage of photodamage. The repair of PSII involves many steps, including degradation and removal of the D1 protein, synthesis de novo of the precursor to the D1 protein, assembly of the PSII complex, and processing of the precursor to the D1 protein. Detailed analysis of photodamage and repair at various temperatures has demonstrated that, among these steps, only the synthesis of the precursor to D1 appears to proceed at low temperatures. Investigations of photoinhibition at low temperatures have also indicated that prolonged exposure of cyanobacterial cells or plant leaves to strong light diminishes their ability to repair PSII. Such non-repairable photoinhibition is caused by inhibition of the processing of the precursor to the D1 protein after prolonged illumination with strong light at low temperatures.
机译:对光抑制作用的最新研究表明,对光系统II(PSII)的光损伤涉及两个在时间上分开的步骤:第一个是锰簇吸收的光使放氧复合物失活,第二个是光化学物质的损伤。被叶绿素吸收的光反应中心。我们对集胞藻的光抑制的研究。 PCC 6803在各种温度下证明,光损伤的第一步未在低温(例如10°C)下完成。进一步的研究表明,在光损伤的第一阶段可能存在一种在低温下稳定的中间状态。 PSII的修复涉及许多步骤,包括降解和去除D1蛋白,从头合成D1蛋白的前体,组装PSII复合物以及处理D1蛋白的前体。在各种温度下对光损伤和修复的详细分析表明,在这些步骤中,只有D1前体的合成似乎在低温下进行。低温下的光抑制研究也表明,长时间将蓝细菌细胞或植物叶片暴露于强光下会削弱它们修复PSII的能力。这种不可修复的光抑制作用是由于在低温下长时间用强光照射后,抑制了D1蛋白前体的加工。

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