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植物中一氧化氮合成、感应和信号转导的现有知识和争议、缺陷和误解。

Present knowledge and controversies, deficiencies, and misconceptions on nitric oxide synthesis, sensing, and signaling in plants.

机构信息

Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas, Universidad Politécnica de Valencia, 46022, Valencia, Spain.

出版信息

Plant Cell Environ. 2020 Jan;43(1). doi: 10.1111/pce.13617. Epub 2019 Aug 22.

Abstract

After 30 years of intensive work, nitric oxide (NO) has just started to be characterized as a relevant regulatory molecule on plant development and responses to stress. Its reactivity as a free radical determines its mode of action as an inducer of posttranslational modifications of key target proteins through cysteine S-nitrosylation and tyrosine nitration. Many of the NO-triggered regulatory actions are exerted in tight coordination with phytohormone signaling. This review not only summarizes and updates the information accumulated on how NO is synthesized, sensed, and transduced in plants but also makes emphasis on controversies, deficiencies, and misconceptions that are hampering our present knowledge on the biology of NO in plants. The development of noninvasive accurate tools for the endogenous NO quantitation as well as the implementation of genetic approaches that overcome misleading pharmacological experiments will be critical for getting significant advances in better knowledge of NO homeostasis and regulatory actions in plants.

摘要

经过 30 年的深入研究,一氧化氮(NO)才刚刚开始被描述为与植物发育和应激反应相关的调节分子。作为自由基的反应性决定了它通过半胱氨酸 S-亚硝化为关键靶蛋白的翻译后修饰和酪氨酸硝化来诱导作用的方式。许多由 NO 触发的调节作用与植物激素信号传导紧密协调。本综述不仅总结和更新了关于植物中 NO 的合成、感知和转导的信息,还强调了那些阻碍我们目前对植物中 NO 生物学认识的争议、缺陷和误解。开发非侵入性的、准确的内源性 NO 定量工具,以及实施遗传方法以克服误导性的药理学实验,对于在更好地了解植物中 NO 动态平衡和调节作用方面取得重大进展至关重要。

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