首页> 外文期刊>Environmental and experimental botany >Ethylene improves Arabidopsis salt tolerance mainly via retaining K+ in shoots and roots rather than decreasing tissue Na+ content. (Special Issue: Phytohormones and stress.)
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Ethylene improves Arabidopsis salt tolerance mainly via retaining K+ in shoots and roots rather than decreasing tissue Na+ content. (Special Issue: Phytohormones and stress.)

机译:乙烯主要通过保留茎和根中的K + 而不是降低组织中Na + 的含量来提高拟南芥的耐盐性。 (特刊:植物激素和压力。)

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Ethylene has been reported to play an essential role in the response of Arabidopsis to salinity and K+ deficiency. It was proposed that plant's ability to maintain potassium (K+) and minimize sodium (Na+) in tissues of salinity plants is critical for salt tolerance (ST). It is still unclear how ethylene modulates plant ion homeostasis under saline occasions. We employed Arabidopsis wild type (Col-0), ethylene insensitive mutants (ein2-5 and ein3-1) and constitutive triple response mutant (ctr1-1) plants to compare their phenotypic and physiological responses to salinity. Ethephon applied to plants could convert quickly to ethylene and here was applied exogenously to Col-0 seedlings to validate ethylene role in salt response. We showed that ethylene insensitivity in ein2-5 or ein3-1 plants increased Arabidopsis salt sensitivity than in Col-0. However, the salinity-induced adverse effects on Chlorophyll a/b, photosystem II function (Fv/Fm) and redox state were largely amended in the ctr1-1 than in Col-0 plants with the severe salinity. The compatible solute sucrose and antioxidant system were also up-regulated to improve ST in ctr1-1 plants. The ethephon obviously alleviated the salinity-induced restriction in root length. The subsequent analysis on the Na+ and K+ homeostasis found that ethylene could help plant retain higher shoot or root K+ nutrition in the short- or long-term salt-stressed plants. However, the ethylene did not significantly alter sodium buildup and water relation in the salt-stressed plants. Our observations confirmed the key role of ethylene in improved plant ST and highlighted the ethylene ability to retain K+, rather than decreasing Na+, in shoots and roots to improve Arabidopsis ST.
机译:据报道,乙烯在拟南芥对盐度和K + 缺乏的响应中起着至关重要的作用。有人提出,植物在盐分植物组织中维持钾(K + )和最小化钠(Na + )的能力对于耐盐性(ST)至关重要。尚不清楚在盐环境下乙烯如何调节植物离子稳态。我们采用了拟南芥野生型(Col-0),对乙烯不敏感的突变体(ein2-5和ein3-1)和组成型三重响应突变体(ctr1-1)植物,以比较它们对盐度的表型和生理响应。应用于植物的乙烯利可快速转化为乙烯,此处将其外生应用于Col-0幼苗,以验证乙烯在盐反应中的作用。我们显示,与在Col-0中相比,在ein2-5或ein3-1植物中乙烯不敏感增加了拟南芥盐敏感性。然而,盐度引起的对叶绿素a / b,光系统II功能(Fv / Fm)和氧化还原状态的不利影响在ctr1-1中比在盐度严重的Col-0植物中得到了很大的改善。相容的溶质蔗糖和抗氧化剂体系也被上调,以提高ctr1-1植物的ST。乙烯利明显减轻了盐分引起的根长限制。随后对Na + 和K + 动态平衡的分析发现,乙烯可以帮助植物在短期内保持较高的芽或根K + 营养。或长期盐胁迫的植物。然而,乙烯并没有显着改变盐胁迫植物的钠积累和水的关系。我们的观察证实了乙烯在改善植物ST中的关键作用,并强调了乙烯在茎和根中保留K + 而不是减少Na + 的能力,以改善拟南芥ST。 。

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