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Enhancement of Na+ Uptake Currents, Time-Dependent Inward-Rectifying K+ Channel Currents, and K+ Channel Transcripts by K+ Starvation in Wheat Root Cells1

机译:钾离子在小麦根细胞中对Na +吸收电流,时间依赖性向内整流K +通道电流和K +通道转录本的增强作用1

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摘要

Excessive low-affinity Na+ uptake is toxic to the growth of glycophytic plants. Recently, several reports have suggested that the interaction between K+ and Na+ uptake might represent a key factor in determining the Na+ tolerance of plants. We investigated the effects of K+ starvation on Na+ and K+ uptake mechanisms in the plasma membrane of wheat (Triticum aestivum L.) root cortex cells using the patch-clamp technique. Unexpectedly, K+ starvation of wheat seedlings was found to enhance the magnitude and frequency of occurrence of time-dependent inward-rectifying K+ channel currents (IK+in). We examined whether the transcription of a wheat root K+in channel gene is induced by K+ starvation. A cDNA coding for a wheat root K+ channel homolog, TaAKT1 (accession no. AF207745), was isolated. TaAKT1 mRNA levels were up-regulated in roots in response to withdrawal of K+ from the growth medium. Furthermore, K+ starvation caused an enhancement of instantaneous Na+ currents (INa+). Electrophysiological analyses suggested that IK+in and INa+ are not mediated by the same transport protein based on: (a) different activation curves, (b) different time dependencies, (c) different sensitivities to external Ca2+, and (d) different cation selectivities. These data implicate a role for INa+ in Na+ uptake and stress during K+ starvation, and indicate that K+in channels may contribute to K+-starvation-induced K+ uptake in wheat roots.
机译:过量的低亲和性Na +吸收对糖生植物的生长有毒。最近,一些报道表明钾离子和钠离子的吸收之间的相互作用可能是决定植物对钠离子的耐受性的关键因素。我们使用膜片钳技术研究了K +饥饿对小麦(Triticum aestivum L.)根皮层细胞质膜Na +和K +吸收机制的影响。出乎意料的是,发现小麦幼苗的K +饥饿会增加时间依赖性向内整流K +通道电流(IK + in)的发生幅度和频率。我们检查了小麦根K + in通道基因的转录是否由K +饥饿诱导。分离出编码小麦根K +通道同源物TaAKT1(登录号AF207745)的cDNA。响应于K +从生长培养基中的撤离,根中的TaAKT1 mRNA水平上调。此外,K +饥饿导致瞬时Na +电流(INa +)增强。电生理分析表明,基于以下因素,IK + in和INa +不受同一转运蛋白的介导:(a)不同的激活曲线,(b)不同的时间依赖性,(c)对外部Ca2 +的不同敏感性,以及(d)不同的阳离子选择性。这些数据暗示了INa +在K +饥饿过程中对Na +吸收和胁迫的作用,并表明K + in通道可能有助于小麦根中K +饥饿诱导的K +吸收。

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