首页> 美国卫生研究院文献>Plants >Comparative Functional Analysis of Class II Potassium Transporters SvHKT2;1 SvHKT2;2 and HvHKT2;1 on Ionic Transport and Salt Tolerance in Transgenic Arabidopsis
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Comparative Functional Analysis of Class II Potassium Transporters SvHKT2;1 SvHKT2;2 and HvHKT2;1 on Ionic Transport and Salt Tolerance in Transgenic Arabidopsis

机译:II类钾转运蛋白的比较功能分析SVHKT2; 1SVHKT2; 2HVHKT2; 1在转基因拟南芥中的离子运输和耐盐性

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摘要

Class II high-affinity potassium transporters (HKT2s) mediate Na+–K+ cotransport and Na+/K+ homeostasis under K+-starved or saline conditions. Their functions have been studied in yeast and X. laevis oocytes; however, little is known about their respective properties in plant cells. In this study, we characterized the Na+ and K+ transport properties of SvHKT2;1, SvHKT2;2 and HvHKT2;1 in Arabidopsis under different ionic conditions. The differences were detected in shoot K+ accumulation and root K+ uptake under salt stress conditions, K+ accumulation in roots and phloem sap under K+-starved conditions, and shoot and root Na+ accumulation under K+-starved conditions among the HKT2s transgenic lines and WT plants. These results indicate the diverse ionic transport properties of these HKT2s in plant cells, which could not be detected using yeast or X. laevis oocytes. Furthermore, Arabidopsis expressing HKT2s showed reduced salt tolerance, while over-expression of HvHKT2;1 in barley, which has the ability to sequestrate Na+, showed enhanced salt tolerance by accumulating Na+ in the shoots. These results suggest that the coordinated enhancement of Na+ accumulation and sequestration mechanisms in shoots could be a promising strategy to confer salt tolerance to glycophytes.
机译:II级高亲和力钾转运蛋白(HKT2S)介导Na + -K + Cotransport和Na + / K +稳态,如K + -Starved或盐水条件。他们的功能已经在酵母和X. Laevis卵母细胞中研究过;然而,对植物细胞中的各自性质知之甚少。在该研究中,我们表征了SvHKT2; 1,SVHKT2; 2和HVHKT2; 1在拟南芥中的Na +和K + + + + +传输性质在不同的离子条件下。在盐胁迫条件下,在盐胁迫条件下拍摄K +积聚和根k +摄取中检测到差异,在K + -starved条件下的k + -starem条件下的k +积聚,并在HKT2S转基因系和WT植物中的K +间条件下射击和根Na +积累。这些结果表明这些HKT2S在植物细胞中的各种离子传输性质,其无法使用酵母或X.1aevis卵母细胞来检测。此外,表达HKT2S的拟南芥显示出降低的耐盐性,而HVHKT2的过度表达;在大麦中的含量,这具有螯合Na +的能力,通过在芽中积累Na +而显示出增强的耐盐性。这些结果表明,芽中Na +积累和封存机制的协调增强可能是赋予糖脂肪细胞耐盐性的有希望的策略。

著录项

  • 期刊名称 Plants
  • 作者

    Yuichi Tada; Aki Ohnuma;

  • 作者单位
  • 年(卷),期 2020(9),6
  • 年度 2020
  • 页码 786
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:拟南芥;大麦;高亲和力钾转运蛋白(HKT);耐盐;

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