首页> 外文会议>China-Japan-Korea Grassland Conference on Knowledge Innovation of Grassland Science and Sustainalbe Development of Grassland Agriculture >Comparative analysis of K+/Na+ selectivity differences in salt tolerance of salt sensitive tetraploid-and salt tolerant decaploid Elytrigia elongata
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Comparative analysis of K+/Na+ selectivity differences in salt tolerance of salt sensitive tetraploid-and salt tolerant decaploid Elytrigia elongata

机译:盐敏盐耐盐性耐盐性耐盐性耐盐性耐盐性耐盐性耐盐性耐盐性的比较分析

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Decaploid Elytrigia elongata is a halophytic relative of wheat that is used to improve salt tolerance of wheat in China.However, the physiological mechanisms for the salt tolerance of decaploid E.elongata remain elusive.To further gain insights into mechanisms important for salt tolerance, we present here a comparative study of salt tolerance in salt sensitive tetraploid E.elongata (PI578686) and salt tolerant decaploid E.elongata (PI276399).Results showed that compared with PI578686, PI276399 exhibited a higher relative growth rate and a stronger selective absorption and-transport capacity for K+ over Na+ under high salt conditions (100-200 mM NaC1).This contributed to maintain lower net Na+ uptake rates and more efficiently control Na+ transport to the shoot in PI276399 than in PI578686.Meanwhile, this also resulted in lower reductions of tissue K+ concentrations as well as of net K+ uptake rates in PI276399 compared to PI578686.Taken together, our findings indicate that PI276399 has the stronger selectivity for K+ over Na+ contributing it to maintain lower Na+ uptake and K+ loss compared with PI578686 in the presence of high salt, and hence endowing the higher salt tolerance of PI276399.
机译:Decaploid Elytrigia Elongata是一种嗜睡的小麦,用于改善中国小麦的耐盐性。然而,Decaploid E.elongata的耐盐性的生理机制仍然是难以捉摸。如果进一步欣赏到对耐盐性重要的机制,我们这里存在于盐敏感的四倍体E.elongata(PI578686)和耐盐剂Decaploide.elongata(PI276399)的比较研究。结果表明,与PI578686相比,PI276399表现出更高的相对生长速率和更强的选择性吸收和 - 在高盐条件下k + k + k +的运输能力(100-200 mm NaC1)。这有助于维持净Na +摄取率,更有效地控制PI276399中的Na +运输,而不是在PI578686.Mean时,这也导致减少组织K +浓度以及PI276399中的净k +摄取率与pi578686相比。我们的研究结果表明PI276399具有K +对Na +的较强的选择性有助于维持低盐存在于PI578686的低Na +摄取和K +损耗,从而赋予PI276399的较高的耐盐性。

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