首页> 外文期刊>Journal of Plant Biology >Coordination of AtHKT1;1 and AtSOS1 facilitates Na+ and K+ homeostasis in Arabidopsis thaliana under salt stress
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Coordination of AtHKT1;1 and AtSOS1 facilitates Na+ and K+ homeostasis in Arabidopsis thaliana under salt stress

机译:盐胁迫下AtHKT1; 1和AtSOS1的配合促进拟南芥中Na +和K +的体内稳态

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Reducing Na+ accumulation and maintaining K+ stability in plant is one of the key strategies for improving salt tolerance. AtHKT1;1 and AtSOS1 are not only the salt tolerance determinants themselves, but also mediate K+ uptake and transport indirectly. To assess the contribution of AtHKT1;1 and AtSOS1 to Na+ homeostasis and K+ nutrition in plant, net Na+ and K+ uptake rate, Na+ and K+ distributions in Arabidopsis thaliana wild type (WT), hkt1;1 mutant (athkt1;1) and sos1 mutant (atsos1) were investigated. Results showed that under 2.5 mM K+ plus 25 or 100 mM NaCl, athkt1;1 shoot concurrently accumulated more Na+ and less K+ than did WT shoot, suggesting that AtHKT1;1 was critical for controlling Na+ and K+ distribution in plant; while atsos1 root accumulated more Na+ and absorbed lower K+ than did WT root, implying that AtSOS1 was determiner of Na+ excretion and K+ acquisition. Under 0.01 mM K+, athkt1;1 absorbed lower Na+ than did WT with 100 mM NaCl, suggesting that AtHKT1;1 is involved in Na+ uptake in roots; while atsos1 shoot accumulated less Na+ than did WT shoot no matter with 25 or 100 mM NaCl, implying that AtSOS1 played a key role in controlling long-distance Na+ transport from root to shoot. We present a model in which coordination of AtHKT1;1 and AtSOS1 facilitates Na+ and K+ homeostasis in A. thaliana under salt stress: under the normal K+, the major function of AtHKT1;1 is Na+ unloading and AtSOS1 is mainly involved in Na+ exclusion, whereas under the low K+, AtHKT1;1 may play a dominant role in Na+ uptake and AtSOS1 may be mainly involved in Na+ loading into the xylem.
机译:减少植物体内的Na +积累并保持K +稳定性是提高耐盐性的关键策略之一。 AtHKT1; 1和AtSOS1本身不仅是耐盐性的决定因素,而且还间接介导了K +的吸收和运输。评估AtHKT1; 1和AtSOS1对植物Na +稳态和K +营养的贡献,拟南芥野生型(WT),hkt1; 1突变体(athkt1; 1)和sos1的净Na +和K +吸收率,Na +和K +分布突变体(atsos1)进行了调查。结果表明,在2.5 mM K +加上25或100 mM NaCl下,athkt1; 1芽比WT芽同时积累更多的Na +和更少的K +,表明AtHKT1; 1对于控制植物中Na +和K +的分布至关重要;而atsos1根比WT根积累更多的Na +和吸收的K +,这说明AtSOS1是Na +排泄和K +吸收的决定因素。在0.01 mM K +下,与100 mM NaCl的WT相比,athkt1; 1吸收的Na +较低,这表明AtHKT1; 1参与了根中Na +的吸收。无论使用25mM还是100mM NaCl,atsos1芽的累积Na +均比WT芽少,这表明AtSOS1在控制从根到芽的长距离Na +转运中起关键作用。我们提出了一个模型,其中AtHKT1; 1和AtSOS1的协调促进盐胁迫下拟南芥的Na +和K +动态平衡:在正常K +下,AtHKT1; 1的主要功能是Na +的卸载,而AtSOS1主要参与Na +的排除,而在低K +下,AtHKT1; 1可能在Na +吸收中起主导作用,而AtSOS1可能主要参与将Na +加载到木质部中。

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