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首页> 外文期刊>Plant Physiology and Biochemistry >Overexpression of TaNHX3, a vacuolar Na~+/H~+ antiporter gene in wheat, enhances salt stress tolerance in tobacco by improving related physiological processes
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Overexpression of TaNHX3, a vacuolar Na~+/H~+ antiporter gene in wheat, enhances salt stress tolerance in tobacco by improving related physiological processes

机译:TaNHX3是小麦中液泡性Na〜+ / H〜+反转运蛋白基因的过表达,通过改善相关的生理过程增强烟草的耐盐胁迫能力

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摘要

Salt stress is one of the major abiotic stresses affecting plant growth, development, and productivity. In this study, we functionally characterized a wheat vacuolar Na~+/H~+ antiporter gene (TaNHX3). TaNHX3 is 78.9% identical with TaNHX2 in nucleic acid level, encoding a polypeptide of 522 amino acids (aa). TaNHX3 is targeted onto tonoplast after ER sorting and can complement the growth under salt stress in a yeast mutant with a defective vacuolar Na~+/H~+ antiporter exchange. TaNHX3 transcripts were induced by applying salt stress in wheat cultivars. More TaNHX3 were detected in the salt-stress-resistant cultivar Ji 7369 compared with the salt-stress-sensitive cultivar Shimai 12 and Ji-Shi-3, an isogenic line derived from aforementioned cultivars with Shimai 12 genetic background. The ectopic TaNHX3 expression in tobacco significantly enhanced the plant tolerance to salt stress. Compared with control plants, the TaNHX3 overexpressing plants displayed no varied Na~+ contents and accumulated more Nat amount in plants. However, they exhibited higher fresh and dry weights, more accumulative nitrogen, phosphorus, and potassium, higher contents of chlorophyll, carotenoid, soluble protein, higher activities of the antioxidant enzymes including superoxide dismutase, catalase, and peroxidase, and lower malondialdehyde and H_2O_2 amount. Our results indicated that TaNHX3 plays an important role in regulating the cytosolic Na~+ transportation within vacuoles under high salinity, alleviating the Na~+ damage effects. The improved salt stress tolerance in TaNHX3 overexpressing tobacco plants is closely associated with the improvement of the aforementioned physiological processes. TaNHX3 can be used as a candidate gene for molecular breeding of salt-tolerant plants.
机译:盐胁迫是影响植物生长,发育和生产力的主要非生物胁迫之一。在这项研究中,我们在功能上表征了小麦液泡的Na〜+ / H〜+反转运蛋白基因(TaNHX3)。 TaNHX3在核酸水平上与TaNHX2的78.9%相同,编码522个氨基酸(aa)的多肽。 TaNHX3在ER分选后被靶向到液泡膜上,并可以在液泡Na〜+ / H〜+反向转运缺陷的酵母突变体中补充盐胁迫下的生长。通过在小麦品种上施加盐胁迫诱导TaNHX3转录本。与耐盐胁迫的品种Shimai 12和Ji-Shi-3相比,在耐盐胁迫的品种Ji 7369中检测到更多的TaNHX3,这是从具有Shimai 12遗传背景的上述品种衍生的同基因系。烟草中异位TaNHX3的表达显着增强了植物对盐胁迫的耐受性。与对照植物相比,过表达TaNHX3的植物显示无变化的Na〜+含量,并且在植物中积累更多的Nat量。但是,它们表现出较高的鲜重和干重,较高的氮,磷和钾累积量,较高的叶绿素,类胡萝卜素,可溶性蛋白含量,较高的抗氧化酶(包括超氧化物歧化酶,过氧化氢酶和过氧化物酶)活性,而丙二醛和H_2O_2含量较低。我们的结果表明,TaNHX3在调节高盐度下液泡内胞质中Na〜+的运输中起着重要作用,减轻了Na〜+的破坏作用。 TaNHX3过表达烟草植物中提高的盐胁迫耐受性与上述生理过程的改善密切相关。 TaNHX3可用作耐盐植物分子育种的候选基因。

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