首页> 外文OA文献 >Overexpression of a Plasma Membrane Bound Na+/H+ Antiporter-Like Protein (SbNHXLP) Confers Salt Tolerance and Improves Fruit Yield in Tomato by Maintaining Ion Homeostasis
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Overexpression of a Plasma Membrane Bound Na+/H+ Antiporter-Like Protein (SbNHXLP) Confers Salt Tolerance and Improves Fruit Yield in Tomato by Maintaining Ion Homeostasis

机译:血浆膜结合的Na + / H +反向转运蛋白样蛋白(SbNHXLP)的过表达赋予盐耐性,并通过维持离子稳态来提高番茄的果实产量。

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摘要

A Na+/H+ antiporter-like protein (NHXLP) was isolated from Sorghum bicolor L. (SbNHXLP) and validated by overexpressing in tomato for salt tolerance. Homozygous T2 transgenic lines when evaluated for salt tolerance, accumulated low Na+ and displayed enhanced salt tolerance compared to wild-type plants (WT). This is consistent with the amiloride binding assay of the protein. Transgenics exhibited higher accumulation of proline, K+, Ca2+, improved cambial conductivity, higher PSII, and antioxidative enzyme activities than WT. Fluorescence imaging results revealed lower Na+ and higher Ca2+ levels in transgenic roots. Co-immunoprecipitation experiments demonstrate that SbNHXLP interacts with a Solanum lycopersicum cation proton antiporter protein2 (SlCHX2). qRT-PCR results showed upregulation of SbNHXLP and SlCHX2 upon treatment with 200 mM NaCl and 100 mM potassium nitrate. SlCHX2 is known to be involved in K+ acquisition, and the interaction between these two proteins might help to accumulate more K+ ions, and thus maintain ion homeostasis. These results strongly suggest that plasma membrane bound SbNHXLP involves in Na+ exclusion, maintains ion homeostasis in transgenics in comparison with WT and alleviates NaCl stress.
机译:从高粱双色(SbNHXLP)中分离出Na + / H +反转运蛋白样蛋白(NHXLP),并通过在番茄中过表达来验证其耐盐性。与野生型植物(WT)相比,纯合子T2转基因品系的耐盐性评估,低Na +积累和提高的耐盐性。这与蛋白质的阿米洛利结合测定是一致的。与野生型相比,转基因植物表现出更高的脯氨酸,K +,Ca2 +积累,改善的冈比亚电导率,更高的PSII和抗氧化酶活性。荧光成像结果显示,转基因根中的Na +含量较低,而Ca2 +含量较高。免疫共沉淀实验表明,SbNHXLP与番茄茄属阳离子质子反转运蛋白2(SlCHX2)相互作用。 qRT-PCR结果显示,用200 mM NaCl和100 mM硝酸钾处理后,SbNHXLP和SlCHX2上调。已知SlCHX2参与K +的获取,这两个蛋白之间的相互作用可能有助于积累更多的K +离子,从而保持离子稳态。这些结果强烈暗示与WT相比,质膜结合的SbNHXLP参与Na +的排除,维持转基因中的离子稳态,并减轻NaCl胁迫。

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