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Effects of salt stress on ion balance and nitrogen metabolism of old and young leaves in rice (Oryza sativa L.)

机译:盐胁迫对水稻(Oryza sativa L.)中老叶和幼叶离子平衡和氮代谢的影响

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Background It is well known that salt stress has different effects on old and young tissues. However, it remains largely unexplored whether old and young tissues have different regulatory mechanism during adaptation of plants to salt stress. The aim of this study was to investigate whether salt stress has different effects on the ion balance and nitrogen metabolism in the old and young leaves of rice, and to compare functions of both organs in rice salt tolerance. Results Rice protected young leaves from ion harm via the large accumulation of Na+ and Cl? in old leaves. The up-regulation of OsHKT1;1, OsHAK10 and OsHAK16 might contribute to accumulation of Na+ in old leaves under salt stress. In addition, lower expression of OsHKT1;5 and OsSOS1 in old leaves may decrease frequency of retrieving Na+ from old leaf cells. Under salt stress, old leaves showed higher concentration of NO3? content than young leaves. Up-regulation of OsNRT1;2, a gene coding nitrate transporter, might contribute to the accumulation of NO3? in the old leaves of salt stressed-rice. Salt stress clearly up-regulated the expression of OsGDH2 and OsGDH3 in old leaves, while strongly down-regulated expression of OsGS2 and OsFd-GOGAT in old leaves. Conclusions The down-regulation of OsGS2 and OsFd-GOGAT in old leaves might be a harmful response to excesses of Na+ and Cl?. Under salt stress, rice might accumulate Na+ and Cl? to toxic levels in old leaves. This might influence photorespiration process, reduce NH4+ production from photorespiration, and immediately down-regulate the expression of OsGS2 and OsFd-GOGAT in old leaves of salt stressed rice. Excesses of Na+ and Cl? also might change the pathway of NH4+ assimilation in old leaves of salt stressed rice plants, weaken GOGAT/GS pathway and elevate GDH pathway.
机译:背景技术众所周知,盐胁迫对古老和年轻的组织有不同的影响。然而,在植物适应盐胁迫过程中,旧的和年轻的组织是否具有不同的调节机制,仍大有待探索。这项研究的目的是研究盐胁迫是否对水稻的老幼叶片的离子平衡和氮代谢具有不同的影响,并比较两个器官在水稻耐盐性中的作用。结果水稻通过在老叶中大量积累Na + 和Cl ?来保护幼叶免受离子伤害。盐胁迫下,OsHKT1; 1,OsHAK10和OsHAK16的上调可能有助于Na + 在叶片中的积累。此外,OsHKT1; 5和OsSOS1在老叶中的较低表达可能会降低从老叶细胞中提取Na + 的频率。在盐胁迫下,老叶的NO 3 含量高于年轻叶。编码硝酸盐转运蛋白的基因OsNRT1; 2的上调可能促进了盐胁迫水稻老叶中NO 3 的积累。盐胁迫明显上调了老叶中OsGDH2和OsGDH3的表达,而强烈下调了老叶中OsGS2和OsFd-GOGAT的表达。结论老叶片中OsGS2和OsFd-GOGAT的下调可能是对过量Na + 和Cl ?的有害反应。在盐胁迫下,水稻可能会将Na + 和Cl ?积累到老叶中的有毒水平。这可能会影响光呼吸过程,减少光呼吸产生的NH 4 + 产量,并立即下调盐胁迫水稻老叶中OsGS2和OsFd-GOGAT的表达。 Na + 和Cl ?的过量也可能改变盐老叶中NH 4 + 同化的途径胁迫水稻,削弱GOGAT / GS途径,提高GDH途径。

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