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Rearrangement of nitrogen metabolism in rice (Oryza sativa L.) under salt stress

机译:盐胁迫下水稻(Oryza sativa L.)氮代谢的重排。

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Salt stress is an important environmental condition limiting the agricultural production. The reprogram of protein expression is one of the strategies of plants to cope with salt stress. We have previously analyzed the photosynthesis, antioxidant andoxidative phosphorylation involved in the carbon metabolism and the redox metabolism in rice seedlings under salt stress. Here, we focused on the proteins involved in nitrogen metabolic response. As it was reported that the nitrite uptake was enhanced inArabidopsis Pll knock-out mutants, the down-regulation of P-II nitrogen sensing protein in rice probably contributes to the accumulation of amino acids under stress. ln addition, the protein synthesis is limited by the decrease of related proteins, andmore amino acids could be used as the compatible solute. Hence, our study indicates that the rearrangement of nitrogen metabolism under salt stress could accumulate more amino acids as the compatible solute rather than the components of proteins. This study provides information for an improved understanding of nitrogen metabolic response to salt stress in rice.
机译:盐胁迫是限制农业生产的重要环境条件。蛋白质表达的重编程是植物应对盐胁迫的策略之一。我们先前已经分析了盐胁迫下水稻幼苗碳代谢和氧化还原代谢的光合作用,抗氧化剂和氧化磷酸化。在这里,我们专注于参与氮代谢反应的蛋白质。据报道,拟南芥Pll基因敲除突变体中亚硝酸盐的吸收增加,水稻中P-II氮感应蛋白的下调可能有助于胁迫下氨基酸的积累。此外,蛋白质合成受到相关蛋白质减少的限制,并且更多的氨基酸可以用作相容性溶质。因此,我们的研究表明,盐胁迫下氮代谢的重排可以积累更多的氨基酸作为相容性溶质,而不是蛋白质的组分。这项研究为更好地理解水稻对盐胁迫的氮代谢反应提供了信息。

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