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脱落酸信号与植物应激反应和发育中其他信号通路的整合

Integration of Abscisic Acid Signaling with Other Signaling Pathways in Plant Stress Responses and Development.

作者信息

Kumar Manu, Kesawat Mahipal Singh, Ali Asjad, Lee Sang-Choon, Gill Sarvajeet Singh, Kim And Hyun Uk

机构信息

Department of Bioindustry and Bioresource Engineering, Plant Engineering Research Institute, Sejong University, Seoul 05006, Korea.

Department of Agriculture, Sri Sri University, Cuttack 754-006, India.

出版信息

Plants (Basel). 2019 Dec 11;8(12):592. doi: 10.3390/plants8120592.

Abstract

Plants are immobile and, to overcome harsh environmental conditions such as drought, salt, and cold, they have evolved complex signaling pathways. Abscisic acid (ABA), an isoprenoid phytohormone, is a critical signaling mediator that regulates diverse biological processes in various organisms. Significant progress has been made in the determination and characterization of key ABA-mediated molecular factors involved in different stress responses, including stomatal closure and developmental processes, such as seed germination and bud dormancy. Since ABA signaling is a complex signaling network that integrates with other signaling pathways, the dissection of its intricate regulatory network is necessary to understand the function of essential regulatory genes involved in ABA signaling. In the present review, we focus on two aspects of ABA signaling. First, we examine the perception of the stress signal (abiotic and biotic) and the response network of ABA signaling components that transduce the signal to the downstream pathway to respond to stress tolerance, regulation of stomata, and ABA signaling component ubiquitination. Second, ABA signaling in plant development processes, such as lateral root growth regulation, seed germination, and flowering time regulation is investigated. Examining such diverse signal integration dynamics could enhance our understanding of the underlying genetic, biochemical, and molecular mechanisms of ABA signaling networks in plants.

摘要

植物固定不动,为了克服干旱、盐害和寒冷等恶劣环境条件,它们进化出了复杂的信号通路。脱落酸(ABA)是一种类异戊二烯植物激素,是一种关键的信号传导介质,可调节各种生物体中的多种生物学过程。在确定和表征参与不同应激反应(包括气孔关闭以及种子萌发和芽休眠等发育过程)的关键ABA介导的分子因子方面已经取得了重大进展。由于ABA信号传导是一个与其他信号通路整合的复杂信号网络,剖析其复杂的调控网络对于理解参与ABA信号传导的重要调控基因的功能是必要的。在本综述中,我们关注ABA信号传导的两个方面。首先,我们研究应激信号(非生物和生物)的感知以及将信号传导至下游通路以响应胁迫耐受性、气孔调节和ABA信号传导组分泛素化的ABA信号传导组分的响应网络。其次,研究了ABA信号传导在植物发育过程中的作用,如侧根生长调节、种子萌发和开花时间调节。研究这种多样的信号整合动态可以增强我们对植物中ABA信号网络潜在的遗传、生化和分子机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfaf/6963649/3be05f88d9c6/plants-08-00592-g001.jpg

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