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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Cloning and characterization of an AtNHX2-like Na+/H+ antiporter gene from Ammopiptanthus mongolicus (Leguminosae) and its ectopic expression enhanced drought and salt tolerance in Arabidopsis thaliana
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Cloning and characterization of an AtNHX2-like Na+/H+ antiporter gene from Ammopiptanthus mongolicus (Leguminosae) and its ectopic expression enhanced drought and salt tolerance in Arabidopsis thaliana

机译:拟南芥(Atguopiptanthus mongolicus)(Leguminosae)的AtNHX2样Na + / H +反转运蛋白基因的克隆,表征及其异位表达增强了拟南芥的干旱和耐盐性

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摘要

An orthologue of the vacuolar Na+/H+ antiporter gene, AmNHX2, was isolated from a desert plant, Ammopiptanthus mongolicus, by RACE-PCR. It has a total length of 1,986 bp, with an open reading frame of 1,632 bp, encoding a predicted polypeptide of 543 amino acids. Sequence similarity and exon constituent analysis clearly suggested that AmNHX2 encoded an AtNHX2 (an antiporter from Arabidopsis) like vacuolar Na+/H+ antiporter. AmNHX2 could be strongly induced by both drought and salt stress. Heterologous expression in the yeast mutant nhx1 indicated that AmNHX2 was the orthologue of ScNHX1, and the complementation effect was almost the same as AtNHX1. Over-expressing AmNHX2 resulted in enhanced tolerances to both drought and salt stresses in transgenic Arabidopsis plants. The transgenic plants accumulated lower Na+ content in their leaves, showing healthier root system after salt stress, and retained more water during the drought stress. Our work suggested that AmNHX2 was a salt tolerance determinant in A. mongolicus, but might not be a contributor to the difference in salt sensitivity between A. thaliana and A. mongolicus.
机译:通过RACE-PCR从沙漠植物Ammopiptanthus mongolicus中分离出液泡状Na + / H +反转运蛋白基因的直向同源物AmNHX2。它的总长度为1,986 bp,开放阅读框为1,632 bp,编码543个氨基酸的预测多肽。序列相似性和外显子组成分析清楚地表明,AmNHX2编码了一个空泡Na + / H +反向转运蛋白AtNHX2(拟南芥的反向转运蛋白)。干旱和盐胁迫均可强烈诱导出AmNHX2。酵母突变体nhx1中的异源表达表明AmNHX2是ScNHX1的直系同源物,其互补作用与AtNHX1几乎相同。过表达的AmNHX2导致转基因拟南芥植物对干旱和盐胁迫的耐受性增强。转基因植物的叶片中Na +含量较低,在盐胁迫后表现出更健康的根系,而在干旱胁迫下保留了更多的水分。我们的工作表明,AmNHX2是蒙古曲霉的耐盐性决定因素,但可能不是造成拟南芥和蒙古曲霉对盐敏感性的差异的原因。

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