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首页> 外文期刊>Plant Physiology and Biochemistry >Nitrogen metabolism correlates with the acclimation of photosynthesis to short-term water stress in rice (Oryza sativa L.)
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Nitrogen metabolism correlates with the acclimation of photosynthesis to short-term water stress in rice (Oryza sativa L.)

机译:氮代谢与稻米(Oryza Sativa L)的光合作用对短期水分胁迫的适应相关

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摘要

Nitrogen metabolism is as sensitive to water stress as photosynthesis, but its role in plant under soil drying is not well understood. We hypothesized that the alterations in N metabolism could be related to the acclimation of photosynthesis to water stress. The features of photosynthesis and N metabolism in a japonica rice 'Jiayou 5' and an indica rice 'Zhongzheyou 1' were investigated under mild and moderate soil drying with a pot experiment. Soil drying increased non-photochemical quenching (NPQ) and reduced photon quantum efficiency of PSII and CO2 fixation in 'Zhongzheyou 1', whereas the effect was much slighter in 'Jiayou 5'. Nevertheless, the photosynthetic rate of the two cultivars showed no significant difference between control and water stress. Soil drying increased nitrate reducing in leaves of 'Zhongzheyou 1', characterized by enhanced nitrate reductase (NR) activity and lowered nitrate content; whereas glutamate dehydrogenase (GDH), glutamic-oxaloacetic transaminase (GOT) and glutamic-pyruvic transaminase (GPT) were relative slightly affected. 'Jiayou 5' plants increased the accumulation of nitrate under soil drying, although its NR activity was increased. In addition, the activities of GDH, GOT and GPT were typically increased under soil drying. Besides, amino acids and soluble sugar were significantly increased under mild and moderate soil drying, respectively. The accumulation of nitrate, amino acid and sugar could serve as osmotica in 'Jiayou 5'. The results reveal that N metabolism plays diverse roles in the photosynthetic acclimation of rice plants to soil drying.
机译:氮代谢与水胁迫与光合作用一样敏感,但其在土壤干燥下的植物中的作用也不受欢迎。我们假设n新陈代谢的改变可能与光合作用的适应与水胁迫有关。在温和和中度土壤干燥中对粳稻“嘉友5”的光合作用和N个代谢的特征在温和和中度土壤干燥中进行了盆栽试验。土壤干燥增加了非光化学淬火(NPQ),并降低了“中嘴沟1”的PSII和CO2固定的光子量子效率,而在“嘉友5”中的效果较小。然而,两种品种的光合速率显示对照和水胁迫之间没有显着差异。土壤干燥在“中智源1”叶片中减少硝酸盐,其特征在于硝酸盐还原酶(NR)活性和降低硝酸盐含量;虽然谷氨酸脱氢酶(GDH),谷氨酸 - 草灭绝转氨酶(GOT)和谷氨酰胺 - 丙酮转氨酶(GPT)相对略微影响。 '嘉友5'植物增加了土壤干燥下硝酸盐的积累,尽管其NR活性增加。此外,GDH,GOT和GPT的活动通常在土壤干燥下增加。此外,在轻度和中度的土壤干燥下,氨基酸和可溶性糖显着增加。硝酸盐,氨基酸和糖的积累可以作为“嘉友5”中的奥姆洛。结果表明,N新陈代谢在水稻植物的光合作用对土壤干燥中起着不同的作用。

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