首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Nitrogen-regulated changes in total amino acid profile of maize genotypes having contrasting response to nitrogen deficit
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Nitrogen-regulated changes in total amino acid profile of maize genotypes having contrasting response to nitrogen deficit

机译:玉米基因型总氨基酸谱的氮气调节变化对氮气缺陷的对比响应

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摘要

Sustainable development of cellular organisms depends on a precise coordination between the carbon and nitrogen metabolisms within the living system. Inorganic N is assimilated into amino acids which serve as an important N source for various regulatory metabolic pathways in plants. This study investigates the role of amino acids in C/N balance by examining changes in amino acid profile in the leaves and roots of low-N-tolerant (PHEM-2) and low-N-sensitive (HM-4) maize genotypes grown hydroponically under N-sufficient (4.5 mM), N-deficient (0.05 mM) and N-restoration conditions. N application effectively altered the level of cysteine, methionine, asparagine, arginine, phenylalanine, glycine, glutamine, aspartate and glutamate in both genotypes. Under low N (0.05 mM), the asparagine and glutamine contents increased, while those of glutamate, phenylalanine and aspartate decreased in both genotypes. However, serine content increased in PHEM-2 but decreased in HM-4. Resupply of N to low-N-grown plants of both genotypes restored the amino acids level to that in the control; the restoration was quicker and more consistent in PHEM-2 than in HM-4. Based on alteration of amino acid level, a strategy can be developed to improve the ability of maize to adapt to low-N environments by way of an improved N utilization.
机译:细胞生物的可持续发展取决于生物系统内碳和氮代谢之间的精确协调。无机N被同化成氨基酸,其作为植物中各种调节代谢途径的重要N个源。本研究通过检查低N耐受(PHEM-2)和低n敏感(HM-4)玉米基因型的叶片和根部中的氨基酸分布的变化来研究氨基酸在C / N平衡中的作用在n足以(4.5mm),n缺乏(0.05mm)和n恢复条件下水块。 N应用有效改变了两种基因型中半胱氨酸,甲硫氨酸,天冬酰胺,精氨酸,苯丙胺,甘氨酸,谷氨酸,天冬氨酸和谷氨酸水平。在低N(0.05mm)下,天冬酰胺和谷氨酰胺含量增加,而谷氨酸,苯丙氨酸和天冬氨酸的含量在两种基因型中降低。然而,PHEM-2的丝氨酸含量增加,但在HM-4中减少。将N个基因型的低N种植植物重新调整两种基因型恢复到对照中的氨基酸水平;恢复比HM-4更快,更符合HM-4。基于氨基酸水平的改变,可以开发一种策略来提高玉米通过改进的N利用方式适应低N环境的能力。

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