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Cold Tolerance of Photosynthetic Electron Transport System Is Enhanced in Wheat Plants Grown Under Elevated CO2

机译:CO2浓度升高下小麦植株光合电子传递系统的耐冷性增强

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摘要

The effects of CO2 elevation on sensitivity of photosynthetic electron transport system of wheat in relation to low temperature stress are unclear. The performance of photosynthetic electron transport system and antioxidant system in chloroplasts was investigated in a temperature sensitive wheat cultivar Lianmai6 grown under the combination of low temperature (2 days at 2/−1°C in the dayight) and CO2 elevation (800 μmol l−1). It was found that CO2 elevation increased the efficiency of photosynthetic electron transport in wheat exposed to low temperature stress, which was related to the enhanced maximum quantum yield for electron transport beyond QA and the increased quantum yield for reduction of end electron acceptors at the PSI acceptor side in plants under elevated CO2. Also, under low temperature, the activities of ATPases, ascorbate peroxidase, and catalase in chloroplasts were enhanced in wheat under elevated CO2. It suggested that the cold tolerance of photosynthetic electron transport system is enhanced by CO2 elevation.
机译:尚不清楚CO 2升高对小麦光合电子传递系统相对于低温胁迫的敏感性的影响。在低温(白天/晚上在2 --1°C下放置2天)和CO2升高(800μmol)的组合下,对温度敏感型小麦Lianmai6进行了研究,研究了叶绿体中光合电子传递系统和抗氧化系统的性能。 l -1 )。研究发现,CO 2升高提高了暴露于低温胁迫下小麦的光合电子传递效率,这与提高了超出QA的电子传递的最大量子产率和降低PSI受体末端电子受体的量子产率有关。在高CO 2浓度下的植物中。同样,在低温下,CO2浓度升高时,小麦叶绿体中的ATPase,抗坏血酸过氧化物酶和过氧化氢酶活性增强。这表明光合作用电子传输系统的耐冷性通过CO 2升高而增强。

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