首页> 外文OA文献 >Cloning of a high-affinity K+ transporter gene PutHKT2;1 from Puccinellia tenuiflora and its functional comparison with OsHKT2;1 from rice in yeast and Arabidopsis
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Cloning of a high-affinity K+ transporter gene PutHKT2;1 from Puccinellia tenuiflora and its functional comparison with OsHKT2;1 from rice in yeast and Arabidopsis

机译:小麦和拟南芥中高亲和力K +转运蛋白PutHKT2; 1的克隆及其与水稻OsHKT2; 1的功能比较

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摘要

A high-affinity K+ transporter PutHKT2;1 cDNA was isolated from the salt-tolerant plant Puccinellia tenuiflora. Expression of PutHKT2;1 was induced by both 300 mM NaCl and K+-starvation stress in roots, but only slightly regulated by those stresses in shoots. PutHKT2;1 transcript levels in 300 mM NaCl were doubled by the depletion of potassium. Yeast transformed with PutHKT2;1, like those transformed with PhaHKT2;1 from salt-tolerant reed plants (Phragmites australis), (i) were able to take up K+ in low K+ concentration medium or in the presence of NaCl, and (ii) were permeable to Na+. This suggests that PutHKT2;1 has a high affinity K+-Na+ symport function in yeast. Arabidopsis over-expressing PutHKT2;1 showed increased sensitivities to Na+, K+, and Li+, while Arabidopsis over-expressing OsHKT2;1 from rice (Oryza sativa) showed increased sensitivity only to Na+. In contrast to OsHKT2;1, which functions in Na+-uptake at low external K+ concentrations, PutHKT2;1 functions in Na+-uptake at higher external K+ concentrations. These results show that the modes of action of PutHKT2;1 in transgenic yeast and Arabidopsis differ from the mode of action of the closely related OsHKT2;1 transporter.
机译:从耐盐植物Puccinellia tenuiflora中分离出高亲和力的K +转运蛋白PutHKT2; 1 cDNA。 300 mM NaCl和根系K +饥饿胁迫均可诱导PutHKT2; 1的表达,但芽中的胁迫仅能轻微调节其表达。钾的消耗使300 mM NaCl中的PutHKT2; 1转录水平翻了一番。用PutHKT2; 1转化的酵母,就像用耐盐的芦苇植物(Phragmites australis)中用PhaHKT2; 1转化的酵母,(i)能够在低K +浓度的培养基中或在NaCl存在下吸收K +,和(ii)对Na +具有渗透性。这表明PutHKT2; 1在酵母中具有高亲和力K + -Na +共转运功能。过量表达拟南芥PutHKT2; 1对Na +,K +和Li +的敏感性增加,而拟南芥过量表达OsHKT2; 1来自水稻(Oryza sativa)的水稻仅对Na +敏感。与OsHKT2; 1在较低的外部K +浓度下会吸收Na +的作用相反,PutHKT2; 1在较高的外部K +浓度下会吸收Na +的作用。这些结果表明PutHKT2; 1在转基因酵母和拟南芥中的作用方式与紧密相关的OsHKT2; 1转运蛋白的作用方式不同。

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