Salicylic Acid biosynthesis and metabolism.

The arabidopsis book Pub Date : 2011-01-01 Epub Date: 2011-12-20 DOI:10.1199/tab.0156
D'Maris Amick Dempsey, A Corina Vlot, Mary C Wildermuth, Daniel F Klessig
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引用次数: 612

Abstract

Salicylic acid (SA) has been shown to regulate various aspects of growth and development; it also serves as a critical signal for activating disease resistance in Arabidopsis thaliana and other plant species. This review surveys the mechanisms involved in the biosynthesis and metabolism of this critical plant hormone. While a complete biosynthetic route has yet to be established, stressed Arabidopsis appear to synthesize SA primarily via an isochorismate-utilizing pathway in the chloroplast. A distinct pathway utilizing phenylalanine as the substrate also may contribute to SA accumulation, although to a much lesser extent. Once synthesized, free SA levels can be regulated by a variety of chemical modifications. Many of these modifications inactivate SA; however, some confer novel properties that may aid in long distance SA transport or the activation of stress responses complementary to those induced by free SA. In addition, a number of factors that directly or indirectly regulate the expression of SA biosynthetic genes or that influence the rate of SA catabolism have been identified. An integrated model, encompassing current knowledge of SA metabolism in Arabidopsis, as well as the influence other plant hormones exert on SA metabolism, is presented.

水杨酸的生物合成与代谢。
水杨酸(SA)已被证明调节生长和发育的各个方面;它也是激活拟南芥和其他植物抗病能力的关键信号。本文就这一重要植物激素的生物合成和代谢机制作一综述。虽然完整的生物合成途径尚未建立,但胁迫拟南芥似乎主要通过叶绿体中的异长酸利用途径合成SA。利用苯丙氨酸作为底物的独特途径也可能有助于SA积累,尽管程度要小得多。一旦合成,游离SA水平可以通过各种化学修饰来调节。许多这些修饰使SA失活;然而,其中一些赋予了新的特性,可能有助于SA的长距离运输或激活应激反应,补充了游离SA诱导的应激反应。此外,已经确定了一些直接或间接调节SA生物合成基因表达或影响SA分解代谢速率的因素。本文提出了一个综合模型,包括拟南芥中SA代谢的现有知识,以及其他植物激素对SA代谢的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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