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A novel wheat -amylase inhibitor gene, TaHPS, significantly improves the salt and drought tolerance of transgenic Arabidopsis

机译:小麦淀粉酶抑制剂基因TaHPS,可显着提高转基因拟南芥的耐盐和抗旱能力

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摘要

On the basis of microarray analyses of the salt-tolerant wheat mutant RH8706-49, a previously unreported salt-induced gene, designated as TaHPS [Triticum aestivum hypothetical (HPS)-like protein], was cloned. Real-time quantitative polymerase chain reaction analyses showed that expression of the gene was induced by abscisic acid, salt and drought. The encoded protein was found to be localized mainly in the plasma membranes. Transgenic Arabidopsis plants overexpressing TaHPS were more tolerant to salt and drought stresses than non-transgenic wild-type (WT) plants. Under salt stress, the root cells of the transgenic plants secreted more Na+ and guard cells took up more Ca2+ ions. Compared with wild-type plants, TaHPS-expressing transgenic plants showed significantly lower amylase activity and glucose and malic acid levels. Our results showed that the expression of TaHPS inhibited amylase activity, which subsequently led to a closure of stomatal apertures and thus improved plant tolerance to salt and drought.
机译:在对耐盐小麦突变体RH8706-49进行微阵列分析的基础上,克隆了一个以前未报道的盐诱导基因,称为TaHPS [普通小麦假想(HPS)样蛋白]。实时定量聚合酶链反应分析表明,该基因的表达是由脱落酸,盐和干旱诱导的。发现编码的蛋白质主要位于质膜中。与非转基因野生型(WT)植物相比,过表达TaHPS的转基因拟南芥植物对盐和干旱胁迫的耐受性更高。在盐胁迫下,转基因植物的根细胞分泌更多的Na +,保卫细胞吸收更多的Ca2 +离子。与野生型植物相比,表达TaHPS的转基因植物显示出明显更低的淀粉酶活性以及葡萄糖和苹果酸水平。我们的结果表明,TaHPS的表达抑制了淀粉酶的活性,从而导致气孔孔径的关闭,从而提高了植物对盐和干旱的耐受性。

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