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Guard Cell Signal Transduction Network: Advances in Understanding Abscisic Acid, CO2, and Ca2+ Signaling

机译:保卫细胞信号转导网络:了解脱落酸,CO2和Ca2 +信号传导的进展

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摘要

Stomatal pores are formed by pairs of specialized epidermal guard cells and serve as major gateways for both CO2 influx into plants from the atmosphere and transpirational water loss of plants. Because they regulate stomatal pore apertures via integration of both endogenous hormonal stimuli and environmental signals, guard cells have been highly developed as a model system to dissect the dynamics and mechanisms of plant-cell signaling. The stress hormone ABA and elevated levels of CO2 activate complex signaling pathways in guard cells that are mediated by kinases/phosphatases, secondary messengers, and ion channel regulation. Recent research in guard cells has led to a new hypothesis for how plants achieve specificity in intracellular calcium signaling: CO2 and ABA enhance (prime) the calcium sensitivity of downstream calcium-signaling mechanisms. Recent progress in identification of early stomatal signaling components are reviewed here, including ABA receptors and CO2-binding response proteins, as well as systems approaches that advance our understanding of guard cell-signaling mechanisms.
机译:气孔由一对专门的表皮保卫细胞形成,是二氧化碳从大气中流入植物以及植物蒸腾失水的主要通道。因为它们通过内源激素刺激和环境信号的整合来调节气孔孔径,所以保卫细胞已被高度开发为解剖植物细胞信号传导动力学和机制的模型系统。应激激素ABA和升高的CO2激活了保护细胞中复杂的信号通路,这些信号通路由激酶/磷酸酶,次级信使和离子通道调节介导。保卫细胞的最新研究为植物如何在细胞内钙信号传导中实现特异性提出了新的假设:CO2和ABA增强(启动)下游钙信号传导机制的钙敏感性。本文回顾了鉴定早期气孔信号成分的最新进展,包括ABA受体和CO2结合反应蛋白,以及促进我们对保卫细胞信号转导机制的理解的系统方法。

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