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植物中的γ-氨基丁酸信号传导:破解谜题中的缺失环节

GABA signaling in plants: targeting the missing pieces of the puzzle.

作者信息

Fromm Hillel

机构信息

School of Plant Sciences and Food Security, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

出版信息

J Exp Bot. 2020 Oct 22;71(20):6238-6245. doi: 10.1093/jxb/eraa358.

Abstract

The adaptation of plants to unstable environments relies on their ability to sense their surroundings and to generate and transmit corresponding signals to different parts of the plant to evoke changes necessary for optimizing growth and defense. Plants, like animals, contain a huge repertoire of intra- and intercellular signals, including organic and inorganic molecules. The occurrence of neurotransmitter-like signaling molecules in plants has been an intriguing field of research. Among these, γ-aminobutyric acid (GABA) was discovered in plants over half a century ago, and studies of its roles as a primary metabolite have been well documented, particularly in the context of stress responses. In contrast, evidence of the potential mechanism by which GABA acts as a signaling molecule in plants has only recently been reported. In spite of this breakthrough, the roles of GABA as a signaling molecule in plants have yet to be established and several aspects of the complexity of the GABA signaling system remain obscure. This review summarizes the uncertainties in GABA signaling in plants and suggests research directions and technologies that would help in answering unsolved questions.

摘要

植物对不稳定环境的适应依赖于它们感知周围环境的能力,以及产生并将相应信号传递到植物不同部位,以引发优化生长和防御所需变化的能力。与动物一样,植物含有大量细胞内和细胞间信号,包括有机和无机分子。植物中类神经递质信号分子的存在一直是一个引人入胜的研究领域。其中,γ-氨基丁酸(GABA)早在半个多世纪前就在植物中被发现,其作为主要代谢物的作用已有充分记录,尤其是在应激反应方面。相比之下,GABA在植物中作为信号分子的潜在机制的证据直到最近才被报道。尽管有这一突破,但GABA作为植物信号分子的作用尚未确立,GABA信号系统复杂性的几个方面仍不清楚。本综述总结了植物中GABA信号传导的不确定性,并提出了有助于回答未解决问题的研究方向和技术。

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