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Overexpression of Tamarix hispida ThTrx5 Confers Salt Tolerance to Arabidopsis by Activating Stress Response Signals

机译:Tamarix hispida ThTrx5的过表达通过激活应激反应信号赋予拟南芥耐盐性

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摘要

Salt stress inhibits normal plant growth and development by disrupting cellular water absorption and metabolism. Therefore, understanding plant salt tolerance mechanisms should provide a theoretical basis for developing salt-resistant varieties. Here, we cloned from , a salt-resistant woody shrub, and generated -overexpressing transgenic lines. Under NaCl stress, the germination rate of overexpressing lines was significantly increased relative to that of the nontransgenic line; under salt stress, superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), and glutathione levels and root length and fresh weight values of transgenic ThTrx5 plants were significantly greater than corresponding values for wild-type plants. Moreover, with regard to the transcriptome, comparison of differential gene expression of transgenic versus nontransgenic lines at 0 h and 3 h of salt stress exposure revealed 500 and 194 differentially expressed genes (DEGs), respectively, that were mainly functionally linked to catalytic activity and binding process. Pull-down experiments showed that ThTrx bound 2-Cys peroxiredoxin BAS1-like protein that influences stress response-associated redox, hormone signal transduction, and transcription factor functions. Therefore, this work provides important insights into mechanisms that promote salt tolerance in plants.
机译:盐胁迫通过破坏细胞的水分吸收和代谢而抑制正常的植物生长和发育。因此,了解植物的耐盐机理应该为开发耐盐品种提供理论依据。在这里,我们从,一种耐盐的木质灌木中克隆并生成了过表达的转基因品系。在NaCl胁迫下,过表达品系的发芽率相对于非转基因品系显着增加。在盐胁迫下,转基因ThTrx5植物的超氧化物歧化酶(SOD),过氧化物酶(POD),过氧化氢酶(CAT)和谷胱甘肽水平,根长和鲜重值显着大于野生型植物的相应值。此外,就转录组而言,在盐胁迫暴露0h和3h时,转基因和非转基因品系的差异基因表达的比较显示,分别有500和194个差异表达基因(DEG),它们主要在功能上与催化活性和绑定过程。下拉实验表明ThTrx结合了2-Cys过氧化物酶BAS1样蛋白,该蛋白会影响与应激反应相关的氧化还原,激素信号转导和转录因子功能。因此,这项工作为促进植物耐盐性的机理提供了重要的见识。

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