首页> 外文期刊>Journal of Plant Biochemistry and Biotechnology >Ectopic expression of a grape vine vacuolar NHX antiporter enhances transgenic potato plant tolerance to salinity
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Ectopic expression of a grape vine vacuolar NHX antiporter enhances transgenic potato plant tolerance to salinity

机译:葡萄藤染色体NHX抗纤维的异位表达增强了转基因马铃薯植物对盐度的耐受性

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摘要

Salinity is a crucial environmental constraint that reduces plant productivity. However, plants activate different signaling pathways to overcome the abiotic stress. The NHX (Na+/H+ exchanger) antiporter corresponds to one of the antiporters involved in response to salinity. They are known to be responsible for the vacuole compartmentation of toxic Na+. In this report, a grapevine vacuolar antiporter (VvNHX1) cDNA was introduced into potato, response of transgenic plants to salinity was evaluated under in vitro and greenhouse culture conditions. The transgenic plants showed higher growth rate than wild type (WT) after the salinity treatment suggesting an improved tolerance both in vitro and under greenhouse culture conditions. In addition, a lower oxidative stress level was observed while a higher relative water and soluble sugar content were measured in transgenic plants compared to WT plants. Furthermore, in contrast to WT plants, the transgenic plants displayed an increase of leaf ion (K+, Mg2+) content and a decline in Na+ accumulation. The increase in the antioxidant enzyme activities in transgenic plants suggests that they can overcome oxidative stress resulting from salt treatment. The measurement of the tuber yield and the weight loss of plants sprinkled with 100mM NaCl in the greenhouse showed a low negative effect on transgenic plants (12.5 and 40%) in comparison to WT (80%).
机译:盐度是一种至关重要的环境约束,可降低植物生产率。然而,植物激活不同的信号传导途径以克服非生物应激。 NHX(Na + / H +交换器)抗脂肪剂对应于响应盐度的副转变器之一。众所周知,他们将负责有毒Na +的液泡室。在本报告中,将葡萄真空抗原物(VVNHX1)cDNA引入马铃薯中,在体外和温室培养条件下评估转基因植物对盐度的反应。在盐度处理后,转基因植物表明在体外和温室培养条件下改善耐受性改善的耐受性后,增长率高于野生型(WT)。此外,与WT植物相比,观察到在转基因植物中测量更高的相对水和可溶性糖含量的较低的氧化应激水平。此外,与WT植物相反,转基因植物显示出叶离子(K +,Mg2 +)含量的增加和Na +积累的下降。转基因植物中抗氧化酶活性的增加表明它们可以克服由盐处理产生的氧化胁迫。温室中撒上100mM NaCl的块茎产量和植物的重量损失对转基因植物(12.5和40%)进行了低负影响,与WT(80%)相比。

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