ABA control of plant macroelement membrane transport systems in response to water deficit and high salinity

脱落酸 非生物胁迫 信号转导 细胞生物学 生物 脱磷 激酶 离子运输机 渗透性休克 磷酸化 化学 磷酸酶 生物化学 基因
作者
Yuriko Osakabe,Kazuo Shinozaki,Kazuo Shinozaki,Lam‐Son Phan Tran
出处
期刊:New Phytologist [Wiley]
卷期号:202 (1): 35-49 被引量:329
标识
DOI:10.1111/nph.12613
摘要

Summary Plant growth and productivity are adversely affected by various abiotic stressors and plants develop a wide range of adaptive mechanisms to cope with these adverse conditions, including adjustment of growth and development brought about by changes in stomatal activity. Membrane ion transport systems are involved in the maintenance of cellular homeostasis during exposure to stress and ion transport activity is regulated by phosphorylation/dephosphorylation networks that respond to stress conditions. The phytohormone abscisic acid ( ABA ), which is produced rapidly in response to drought and salinity stress, plays a critical role in the regulation of stress responses and induces a series of signaling cascades. ABA signaling involves an ABA receptor complex, consisting of an ABA receptor family, phosphatases and kinases: these proteins play a central role in regulating a variety of diverse responses to drought stress, including the activities of membrane‐localized factors, such as ion transporters. In this review, recent research on signal transduction networks that regulate the function ofmembrane transport systems in response to stress, especially water deficit and high salinity, is summarized and discussed. The signal transduction networks covered in this review have central roles in mitigating the effect of stress by maintaining plant homeostasis through the control of membrane transport systems. Contents Summary 35 I. Introduction 35 II. Water deficit stress stimulates ABA biosynthesis and transport 36 III. ABA signal transductions control ion transport for modulating stomatal aperture 39 IV. The involvement of ion transport systems in the maintenance of ion homeostasis during abiotic stress 42 V. Conclusion 44 Acknowledgements 44 References 45
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