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A chimeric vacuolar Na+/H+ antiporter gene evolved by DNA family shuffling confers increased salt tolerance in yeast

机译:DNA家族改组产生的嵌合液泡Na + / H +反转运蛋白基因提高了酵母的耐盐性

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摘要

The vacuolar Na+/H+ antiporter plays an important role in maintaining ionic homeostasis and the osmotic balance of the cell with the environment by sequestering excessive cytoplasmic Na+ into the vacuole. However, the relatively low Na+/H+ exchange efficiency of the identified Na+/H+ antiporter could limit its application in the molecular breeding of salt tolerant crops. In this study, DNA family shuffling was used to create chimeric Na+/H+ antiporters with improved transport activity. Two homologous Na+/H+ antiporters from halophytes Salicornia europaea (SeNHX1) and Suaeda salsa (SsNHX1) were shuffled to generate a diverse gene library. Using a high-throughput screening system of yeast complementation, a novel chimeric protein SseNHX1 carrying 12 crossover positions and 2 point mutations at amino acid level was selected. Expression of SseNHX1 in yeast mutant exhibited approximately 46% and 22% higher salt tolerance ability in yeast growth test than that of SsNHX1 and SeNHX1, respectively. Measurements of the ion contents demonstrated that SseNHX1 protein in yeast cells accumulated more Na+ and slightly more K+ than the parental proteins did. Furthermore, this chimera also conferred increased tolerance to LiC1 and a similar tolerance to hygromycin B compared with the parental proteins in yeast. (C) 2015 Elsevier B.V. All rights reserved.
机译:液泡状的Na + / H +反向转运蛋白通过将过量的细胞质Na +螯合到液泡中,在维持离子稳态和细胞与环境的渗透平衡中起重要作用。但是,已确定的Na + / H +反向转运蛋白相对较低的Na + / H +交换效率可能会限制其在耐盐作物的分子育种中的应用。在这项研究中,DNA家族改组被用于创建具有改善的运输活性的嵌合Na + / H +反转运蛋白。将来自盐生盐生植物Salicornia europaea(SeNHX1)和Suaeda salsa(SsNHX1)的两个同源Na + / H +反转运蛋白改组以生成一个多样化的基因库。使用酵母互补的高通量筛选系统,选择了一种新的嵌合蛋白SseNHX1,该蛋白在氨基酸水平上带有12个交叉位置和2个点突变。在酵母生长测试中,SseNHX1在酵母突变体中的表达分别比SsNHX1和SeNHX1表现出约46%和22%的耐盐性。离子含量的测量表明,酵母细胞中的SseNHX1蛋白比亲本蛋白积累了更多的Na +和略多的K +。此外,与酵母中的亲本蛋白相比,该嵌合体还赋予了对LiC1的增加的耐受性和对潮霉素B的相似耐受性。 (C)2015 Elsevier B.V.保留所有权利。

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