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首页> 外文期刊>The Plant Cell >Osmotic stress responses and plant growth controlled by potassium transporters in Arabidopsis.
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Osmotic stress responses and plant growth controlled by potassium transporters in Arabidopsis.

机译:拟南芥中钾转运蛋白控制的渗透胁迫响应和植物生长。

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Osmotic adjustment plays a fundamental role in water stress responses and growth in plants; however, the molecular mechanisms governing this process are not fully understood. Here, we demonstrated that the KUP potassium transporter family plays important roles in this process, under the control of abscisic acid (ABA) and auxin. We generated Arabidopsis thaliana multiple mutants for K+ uptake transporter 6 (KUP6), KUP8, KUP2/SHORT HYPOCOTYL3, and an ABA-responsive potassium efflux channel, guard cell outward rectifying K+ channel (GORK). The triple mutants, kup268 and kup68 gork, exhibited enhanced cell expansion, suggesting that these KUPs negatively regulate turgor-dependent growth. Potassium uptake experiments using 86radioactive rubidium ion (86Rb+) in the mutants indicated that these KUPs might be involved in potassium efflux in Arabidopsis roots. The mutants showed increased auxin responses and decreased sensitivity to an auxin inhibitor (1-N-naphthylphthalamic acid) and ABA in lateral root growth. During water deficit stress, kup68 gork impaired ABA-mediated stomatal closing, and kup268 and kup68 gork decreased survival of drought stress. The protein kinase SNF1-related protein kinases 2E (SRK2E), a key component of ABA abscisic acid signaling, interacted with and phosphorylated KUP6, suggesting that KUP functions are regulated directly via an ABA signaling complex. We propose that the KUP6 subfamily transporters act as key factors in osmotic adjustment by balancing potassium homeostasis in cell growth and drought stress responses.
机译:渗透调节在植物的水分胁迫响应和生长中起着根本性的作用。但是,尚不完全了解控制该过程的分子机制。在这里,我们证明了KUP钾转运蛋白家族在脱落酸(ABA)和生长素的控制下在此过程中起着重要作用。我们为K + 摄取转运蛋白6(KUP6),KUP8,KUP2 / SHORT HYPOCOTYL3和一个ABA响应钾外排通道,拟南芥保护细胞向外整流K + 频道(GORK)。三重突变体kup268和kup68 gork表现出增强的细胞扩增能力,表明这些KUPs负调节了依赖于雄激素的生长。使用 86 放射性rub离子( 86 Rb + )进行钾吸收实验表明,这些KUPs可能参与拟南芥根的钾外流。 。突变体在侧根生长中显示出生长素应答增强和对生长素抑制剂(1-N-萘基邻苯二甲酸)和ABA的敏感性降低。在缺水胁迫期间,kup68 gork破坏了ABA介导的气孔关闭,而kup268和kup68 gork降低了干旱胁迫的存活率。蛋白激酶SNF1相关蛋白激酶2E(SRK2E)是ABA脱落酸信号的关键组成部分,与KUP6相互作用并被磷酸化,这提示KUP功能直接通过ABA信号复合物调节。我们提出,KUP6亚家族转运蛋白通过平衡细胞生长和干旱胁迫反应中的钾稳态来充当渗透调节的关键因素。

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