首页> 外文期刊>Plant and cell physiology >12-Hydroxy-Jasmonoyl-l-Isoleucine Is an Active Jasmonate That Signals through CORONATINE INSENSITIVE 1 and Contributes to the Wound Response in Arabidopsis
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12-Hydroxy-Jasmonoyl-l-Isoleucine Is an Active Jasmonate That Signals through CORONATINE INSENSITIVE 1 and Contributes to the Wound Response in Arabidopsis

机译:12-羟基 - jasmonoyl-l-异亮氨酸是通过冠状鱼类不敏感1发出信号的活性茉鲸醇,有助于拟南芥的伤口反应

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12-hydroxy-jasmonoyl-isoleucine (12OH-JA-Ile) is a metabolite in the catabolic pathway of the plant hormone jasmonate, and is synthesized by the cytochrome P450 subclade 94 enzymes. Contrary to the well-established function of jasmonoyl-isoleucine (JA-Ile) as the endogenous bioactive form of jasmonate, the function of 12OH-JA-Ile is unclear. Here, the potential role of 12OH-JA-Ile in jasmonate signaling and wound response was investigated. Exogenous application of 12OH-JA-Ile mimicked several JA-Ile effects including marker gene expression, anthocyanin accumulation and trichome induction in Arabidopsis thaliana. Genome-wide transcriptomics and untargeted metabolite analyses showed large overlaps between those affected by 12OH-JA-Ile and JA-Ile. 12OH-JA-Ile signaling was blocked by mutation in CORONATINE INSENSITIVE 1. Increased anthocyanin accumulation by 12OH-JA-Ile was additionally observed in tomato and sorghum, and was disrupted by the COI1 defect in tomato jai1 mutant. In silico ligand docking predicted that 12OH-JA-Ile can maintain many of the key interactions with COI1-JAZ1 residues identified earlier by crystal structure studies using JA-Ile as ligand. Genetic alternation of jasmonate metabolic pathways in Arabidopsis to deplete both JA-Ile and 12OH-JA-Ile displayed enhanced jasmonate deficient wound phenotypes and was more susceptible to insect herbivory than that depleted in only JA-Ile. Conversely, mutants overaccumulating 12OH-JA-Ile showed intensified wound responses compared with wild type with similar JA-Ile content. These data are indicative of 12OH-JA-Ile functioning as an active jasmonate signal and contributing to wound and defense response in higher plants.
机译:12-羟基 - jasmonoyl-异氨酸(12OH-Ja-ILE)是植物激素茉尾醇的分解代谢途径中的代谢物,并通过细胞色素P450亚酶合成。与jasmonoyl-异亮氨酸(Ja-ile)的良好功能相反,作为茉莉酸的内源性生物活性形式,12OH-JA-ILE的功能尚不清楚。在此,研究了12OH-JA-ILE在茉莉酸盐信号传导和伤口反应中的潜在作用。 12oh-Ja-ile的外源性施用模仿几种JA-ILE效应,包括标志物基因表达,拟南芥植物中的花青素积累和毛状体诱导。基因组的转录组织和未确定的代谢物分析在受120 oh-ja-ile和Ja-ile之间的影响下显示出大的重叠。 12OH-JA-ILE信号传导通过癌素不溶的突变阻断。在番茄和高粱中另外观察到12OH-JA-ILE的花青素积累增加,并在番茄JAI1突变体中被COI1缺陷中断。在硅配体上,对接预测,12OH-JA-ILe可以通过使用JA-ILE作为配体的晶体结构研究将提前鉴定的COI1-JAZ1残基的许多关键相互作用维持。拟南芥中茉莉酸酯代谢途径的遗传交替耗尽JA-ILE和12OH-JA-ILE显示增强的茉莉酸缺乏伤害表型,并且比仅在JA-ILE中耗尽的昆虫草本更容易受到影响。相反,与具有相似JA-ILE含量的野生型相比,突变体突出了12OH-JA-ILE显示得出强化的伤口反应。这些数据指示为12OH-JA-ILE作为活性茉莉酸的信号,并导致高等植物中的伤口和防御反应。

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