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Ca~(2+) signalling and control of guard-cell volume in stomatal movements

机译:气孔运动中Ca〜(2+)的信号传导与保卫细胞的控制

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Stomatal guard cells are unique as a plant cell model and, because of the depth of knowledge now to hand on ion transport and its regulation, serve as an excellent model for the analysis of stimulus-response coupling in higher plants. Parallel controls - mediated by Ca~(2+), H~+ protein kinases and phosphatases - regulate the gating of the K~+ and Cl~- channels that facilitate solute flux for stomatal movements. A growing body of evidence now indicates that oscillations in the cytosolic free concentration of Ca~(2+) contribute to a 'signalling cassette', which is integrated within these events through an unusual coupling with membrane voltage. Additional developments during the past two years point to events in membrane traffic that play complementary roles in stomatal control. Research in these areas, especially, is now adding entirely new dimensions to our understanding of guard cell signalling.
机译:气孔保卫细胞作为植物细胞模型是独特的,并且由于现在掌握有关离子迁移及其调控的知识,因此可以作为分析高等植物中刺激-反应耦合的出色模型。由Ca〜(2 +),H〜+蛋白激酶和磷酸酶介导的平行对照调节K〜+和Cl〜-通道的门控,从而促进气孔运动的溶质通量。现在越来越多的证据表明,Ca〜(2+)的胞质游离浓度的振荡会导致“信号盒”,该信号盒通过与膜电压的异常耦合而整合在这些事件中。过去两年中的其他发展表明膜运输中的事件在气孔控制中起补充作用。尤其是在这些领域的研究,正在为我们对保护单元信号的理解增加了全新的维度。

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