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Response to High Temperature in Flag Leaves of Super High-Yielding Rice Pei'ai 64S/E32 and Liangyoupeijiu

机译:超高产水稻培矮64E / E32和两优培九剑叶对高温的响应。

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摘要

Two newly bred hybrid rice combinations, super high-yielding Liangyoupeijiu (Pei'ai 64SX9311) and Pei'ai 64S/E32 (Pei'ai 64SXE32) were used to investigate the photosynthetic characteristics under high temperature in comparison with hybrid rice Shangyou 63. High temperature caused a decreased photosynthetic efficiency and aggravated photoinhibition. The optimum temperature for photosynthetic electron transportation and photosynthetic CO_2 fixation were about 28℃ and 35-40℃ respectively. Linear electron transportation is more sensitive to high temperature than the photochemical process. The mechanism of high temperature adaptation was possibly as follows: super high-yielding rice has quickly increasing carotenoid, which acted as a more favorable antioxidant system to reduce the active oxygen production and avoid damage to the photosynthesis system; super high-yielding rice has a higher efficiency of xanthophylls cycle to dissipate excess heat energy; super high-yielding rice has a more stable photosynthetic function, higher photosynthetic efficiency and more heat stable protein content.
机译:与杂交水稻上优63相比,使用了两个新杂交杂交稻组合超高产两优培九(培爱64SX9311)和培爱64S / E32(培爱64SXE32)来研究高温下的光合特性。温度升高导致光合作用效率降低,光抑制作用加剧。光合电子传输和CO_2固定的最适温度分别为28℃和35-40℃。线性电子传输比光化学过程对高温更敏感。高温适应的机理可能是:超高产稻米中的类胡萝卜素含量迅速增加,可作为一种更有利的抗氧化剂体系来减少活性氧的产生并避免对光合作用系统的损害。超级高产稻米具有较高的叶黄素循环效率,可以消除多余的热能。超高产稻米具有更稳定的光合功能,更高的光合效率和更高的热稳定蛋白含量。

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