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首页> 外文期刊>Plant Biotechnology Journal >Introduction of the ZmDof1 gene into rice enhances carbon and nitrogen assimilation under low-nitrogen conditions
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Introduction of the ZmDof1 gene into rice enhances carbon and nitrogen assimilation under low-nitrogen conditions

机译:将ZMDOF1基因引入水稻提高低氮气条件下的碳和氮同化

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The excessive application of nitrogen fertilizer to maximize crop yields causes negative environmental effects such as pollution and ecological imbalance. To overcome this problem, researchers have attempted to improve the nitrogen assimilation capacity of crops. Maize Dof1 (ZmDof1) is a plant-specific transcription factor shown to promote nitrogen assimilation in Arabidopsis thaliana (Arabidopsis) even under nitrogen-deficient conditions. The present study examines the effect of the introduction of the ZmDof1 gene on carbon and nitrogen assimilation in rice. ZmDof1 induced the expression of phosphoenolpyruvate carboxylase (PEPC) genes in transgenic rice plants and transactivated the PEPC promoters in protoplast transient assays, showing similar effects in rice as in Arabidopsis. Transgenic rice expressing ZmDof1 and grown in the presence of 360 μm (nitrogen-sufficient) or 90 μm (nitrogen-deficient) of nitrogen concentrations showed modulation of metabolite content and gene expression associated with the anaplerotic pathway for the TCA cycle, suggesting an increased carbon flow towards nitrogen assimilation. Furthermore, increases in carbon and nitrogen amounts per seedling were found in Dof1 rice grown under nitrogen-deficient conditions. Nitrogen deficiency also resulted in the predominant distribution of nitrogen to roots, accompanied by significant increases in root biomass and modification of the shoot-to-root ratio. Measurement of the COSUB2/SUB gas exchange rate showed a significant increase in the net photosynthesis rate in Dof1 rice under nitrogen-deficient conditions. Taken these together, the present study displayed that ZmDof1 expression in rice could induce gene expressions such as PEPC genes, modulate carbon and nitrogen metabolites, increase nitrogen assimilation and enhance growth under low-nitrogen conditions.
机译:过度施用氮肥以最大化作物产量导致负面的环境影响,如污染和生态不平衡。为了克服这个问题,研究人员试图改善作物的氮同化能力。玉米DOF1(ZMDOF1)是一种植物特异性转录因子,其甚至在氮气缺乏条件下促进拟南芥(拟南芥)中的氮同化。本研究研究了引入ZMDOF1基因对水稻碳和氮同化的影响。 ZMDOF1诱导转基因水稻植物中磷酸丙酮酸羧基酶(Pepc)基因的表达,并在原生质体瞬态测定中转移肽促进剂,在拟南芥中显示出水稻的类似效果。表达ZMDOF1的转基因水稻和在360μm(氮气足够)或90μm(氮气缺乏)的氮浓度的情况下显示了代谢物含量的调节和与TCA循环的翼形途径相关的代谢物含量和基因表达,表明碳增加朝向氮素同化流动。此外,在氮气缺乏条件下在DOF1水稻中发现了每次幼苗的碳和氮素量的增加。缺乏缺乏症也导致氮对根部的主要分布,伴随着根系生物量的显着增加和脱叶比的修饰。 CO 2 气体交换速率的测量显示在氮气缺乏条件下DOF1水稻中净光合速率的显着增加。将这些研究在一起,目前的研究表明,水稻中的ZmDOF1表达可以诱导基因表达,例如Pepc基因,调节碳和氮代谢物,增加氮同化和增强低氮气条件下的生长。

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