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茉莉酸生物化学途径中的代谢控制。

Metabolic Control within the Jasmonate Biochemical Pathway.

机构信息

Centre National de la Recherche Scientifique (IBMP-CNRS), Institut de Biologie Mol�culaire des Plantes, Universit� de Strasbourg, 12 rue du General Zimmer, 67000 Strasbourg, France.

出版信息

Plant Cell Physiol. 2019 Dec 1;60(12):2621-2628. doi: 10.1093/pcp/pcz172.

Abstract

Regulation of defense and developmental responses by jasmonates (JAs) has been intensively investigated at genetic and transcriptional levels. Plasticity in the jasmonic acid (JA) metabolic pathway as a means to control signal output has received less attention. Although the amplitude of JA responses generally follows the accumulation dynamics of the active hormone jasmonoyl-isoleucine (JA-Ile), emerging evidence has identified cases where this relationship is distorted and that we discuss in this review. JA-Ile is turned over in Arabidopsis by two inducible, intertwined catabolic pathways; one is oxidative and mediated by cytochrome P450 enzymes of the subfamily 94 (CYP94), and the other proceeds via deconjugation by amidohydrolases. Their genetic inactivation has profound effects on JAs homeostasis, including strong JA-Ile overaccumulation, but this correlates with enhanced defense and tolerance to microbial or insect attacks only in the absence of overinduction of negative signaling regulators. By contrast, the impairment of JA oxidation in the jasmonic acid oxidase 2 (jao2) mutant turns on constitutive defense responses without elevating JA-Ile levels in naive leaves and enhances resistance to subsequent biotic stress. This latter and other recent cases of JA signaling are associated with JA-Ile catabolites accumulation rather than more abundant hormone, reflecting increased metabolic flux through the pathway. Therefore, manipulating upstream and downstream JA-Ile homeostatic steps reveals distinct metabolic nodes controlling defense signaling output.

摘要

茉莉酸(JAs)对防御和发育反应的调控已在遗传和转录水平上得到了深入研究。作为控制信号输出的手段,茉莉酸(JA)代谢途径的可塑性受到的关注较少。尽管 JA 反应的幅度通常遵循活性激素茉莉酰-异亮氨酸(JA-Ile)的积累动态,但越来越多的证据表明,这种关系存在扭曲,我们将在本综述中讨论这些扭曲现象。拟南芥中的 JA-Ile 由两种可诱导的、交织在一起的分解代谢途径来代谢;一种是氧化途径,由细胞色素 P450 酶亚家族 94(CYP94)介导,另一种则通过酰胺水解酶进行脱共轭反应。它们的遗传失活对 JAs 的动态平衡有深远的影响,包括强烈的 JA-Ile 积累,但这与防御和对微生物或昆虫攻击的耐受性增强相关,仅在没有过度诱导负信号调节剂的情况下才会出现这种情况。相比之下,在茉莉酸氧化酶 2(jao2)突变体中,JA 氧化的损伤会导致组成型防御反应的开启,而不会在初始叶片中升高 JA-Ile 水平,并增强对随后生物胁迫的抗性。这种后者和其他最近的 JA 信号案例与 JA-Ile 分解代谢物的积累有关,而不是更多的激素,反映出该途径中代谢通量的增加。因此,操纵 JA-Ile 体内平衡的上下游步骤揭示了控制防御信号输出的不同代谢节点。

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