首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Novel Plant Vacuolar Na+/H+ Antiporter Gene Evolved by DNA Shuffling Confers Improved Salt Tolerance in Yeast
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A Novel Plant Vacuolar Na+/H+ Antiporter Gene Evolved by DNA Shuffling Confers Improved Salt Tolerance in Yeast

机译:DNA改组进化的新型植物叶片Na + / H +反转运蛋白基因提高了酵母的耐盐性

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摘要

Plant vacuolar Na+/H+ antiporters play important roles in maintaining cellular ion homeostasis and mediating the transport of Na+ out of the cytosol and into the vacuole. Vacuolar antiporters have been shown to play significant roles in salt tolerance; however the relatively low Vmax of the Na+/H+ exchange of the Na+/H+ antiporters identified could limit its application in the molecular breeding of salt tolerant crops. In this study, we applied DNA shuffling methodology to generate and recombine the mutations of Arabidopsis thaliana vacuolar Na+/H+ antiporter gene AtNHX1. Screening using a large scale yeast complementation system identified AtNHXS1, a novel Na+/H+ antiporter. Expression of AtNHXS1 in yeast showed that the antiporter localized to the vacuolar membrane and that its expression improved the tolerance of yeast to NaCl, KCl, LiCl, and hygromycin B. Measurements of the ion transport activity across the intact yeast vacuole demonstrated that the AtNHXS1 protein showed higher Na+/H+ exchange activity and a slightly improved K+/H+ exchange activity.
机译:植物液泡中的Na + / H + 反转运蛋白在维持细胞离子稳态和介导Na + 从细胞质进入细胞质的转运过程中起着重要作用。液泡。已有研究表明,液泡逆向转运蛋白在耐盐性中起着重要的作用。然而,Na + / H + 交换的Na + / H + 反转运蛋白的Vmax较低可能会限制其在耐盐作物分子育种中的应用。在这项研究中,我们使用DNA改组方法来生成和重组拟南芥液泡Na + / H + 反转运蛋白基因AtNHX1的突变。使用大规模酵母互补系统进行筛选,鉴定出AtNHXS1,这是新型的Na + / H + 反向转运蛋白。 AtNHXS1在酵母中的表达表明该反转运蛋白位于液泡膜上,并且它的表达提高了酵母对NaCl,KCl,LiCl和潮霉素B的耐受性。对完整酵母液泡中离子转运活性的测量表明,AtNHXS1蛋白表现出更高的Na + / H + 交换活性,而K + / H + 交换活性略有改善。

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