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Regulation of K+ Channels in Maize Roots by Water Stress and Abscisic Acid

机译:水分胁迫和脱落酸对玉米根系钾离子通道的调控

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摘要

Root cortical and stelar protoplasts were isolated from maize (Zea mays L.) plants that were either well watered or water stressed, and the patch-clamp technique was used to investigate their plasma membrane K+ channel activity. In the root cortex water stress did not significantly affect inward- or outward-rectifying K+ conductances relative to those observed in well-watered plants. In contrast, water stress significantly reduced the magnitude of the outward-rectifying K+ current in the root stele but had little effect on the inward-rectifying K+ current. Pretreating well-watered plants with abscisic acid also significantly affected K+ currents in a way that was consistent with abscisic acid mediating, at least in part, the response of roots to water stress. It is proposed that the K+ channels underlying the K+ currents in the root stelar cells represent pathways that allow K+ exchange between the root symplasm and xylem apoplast. It is suggested that the regulation of K+ channel activity in the root in response to water stress could be part of an important adaptation of the plant to survive drying soils.
机译:从水分充足或缺水的玉米(Zea mays L.)植物中分离出根皮层和柱状原生质体,并采用膜片钳技术研究其质膜K + 通道的活性。相对于在浇水良好的植物中观察到的水分,在根皮层中,水分胁迫并未显着影响向内或向外整流的K + 电导。相反,水分胁迫显着降低了根碑中向外整流K + 电流的大小,但对向内整流K + 电流影响很小。用脱落酸对水分充足的植物进行预处理也以与脱落酸至少部分地介导根对水分胁迫的响应相一致的方式,显着影响了K + 电流。有人提出,在根石质细胞中,K + 电流下的K + 通道代表了允许根同质之间交换K + 的途径。和木质部质外体。提示根系对水分胁迫的调节作用可能是植物适应干旱土壤的重要适应措施之一。

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