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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Promotive Effect of ATP on Photosynthesis and Photooxidation in Transgenic Rice Expressing PEPC, PPDK and ME Enzyme Genes
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Promotive Effect of ATP on Photosynthesis and Photooxidation in Transgenic Rice Expressing PEPC, PPDK and ME Enzyme Genes

机译:ATP对表达肽,PPDK及ME酶基因转基因水稻光合作用和光氧化的促进作用

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摘要

Untransformed rice (WT) and transgenic rice containing maize phosphoenolpyruvate (PEPC), pyruvate orthophosphate dikinase (PPDK), and NADP-malic enzyme (ME) genes were studied. In addition, the activity of C-4 photosynthetic enzymes, photosynthetic response to light/temperature and the metabolic index of active oxygen were also measured and analyzed. The activities of C-4 photosynthetic enzymes in WT were very low, while those of corresponding enzymes in transgenic rice with PEPC, PPDK, and ME genes (PKM) were highly expressed. Under the conditions of high light intensity and high temperature, the photosynthetic rate of PKM after adenosine triphosphate (ATP) treatment increased by 15.7% and 13.3%, respectively, as compared with that without ATP treatment. The photosynthetic rate of PKM after ATP treatment was similar to that of maize, accounting for 80.7%. Moreover, its tolerance against photooxidation was enhanced. The photosynthetic productivity of PKM after ATP treatment was improved. This demonstrates that ATP is the key factor in enhancing photosynthetic capacity in transgenic rice containing C-4 genes. These results provide a new technical approach for rice breeding with high photosynthetic efficiency.
机译:研究了未转化的水稻(WT)和含玉米磷酸丙烯酸吡合他分(Pepc),丙酮酸正磷酸二磷酸二基酶(PPDK)和NADP-苹果酶(ME)基因的转基因水稻。此外,还测量并分析了C-4光合酶的活性,对光/温度的光合响应和活性氧的代谢指数。 WT中的C-4光合酶的活性非常低,而转基因水稻与Pepc,PPDK和ME基因(PKM)的相应酶的活性非常低。在高光强度和高温的条件下,与没有ATP处理的情况相比,腺苷三磷酸三磷酸盐(ATP)处理后PKM的光合速率分别增加了15.7%和13.3%。 ATP处理后PKM的光合速率与玉米相似,占80.7%。此外,其对光氧化的耐受性得到了增强。 ATP处理后PKM的光合生产率得到改善。这表明ATP是增强含C-4基因的转基因水稻光合容量的关键因素。这些结果为具有高光合效率的水稻育种提供了新的技术方法。

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