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首页> 外文期刊>The New Phytologist >Four 13-lipoxygenases contribute to rapid jasmonate synthesis in wounded Arabidopsis thaliana leaves: a role for lipoxygenase 6 in responses to long-distance wound signals
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Four 13-lipoxygenases contribute to rapid jasmonate synthesis in wounded Arabidopsis thaliana leaves: a role for lipoxygenase 6 in responses to long-distance wound signals

机译:四种13-脂氧合酶促进受伤的拟南芥叶片中的茉莉酸酯快速合成:脂氧合酶6在响应长距离伤口信号中的作用

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Damage-iinducible defenses in plants are controlled in part by jasmonates, fatty acid-derived regulators that start to accumulate within 30 s of wounding a leaf. Using liquid chromatography tandem mass spectrometry, we sought to identify the 13-lipoxygenases (13-LOXs) that initiate wound-induced jasmonate synthesis within a 190-s timeframe in Arabidopsis thaliana in 19 single, double, triple and quadruple mutant combinations derived from the four 13-LOX genes in this plant. All four 13-LOXs were found to contribute to jasmonate synthesis in wounded leaves: among them LOX6 showed a unique behavior. The relative contribution of LOX6 to jasmonate synthesis increased with distance from a leaf tip wound, and LOX6 was the only 13-LOX necessary for the initiation of early jasmonate synthesis in leaves distal to the wounded leaf. Herbivory assays that compared Spodoptera littoralis feeding on the lox2-1 lox3B lox4A lox6A quadruple mutant and the lox2-1 lox3B lox4A triple mutant revealed a role for LOX6 indefense of the shoot apical meristem. Consistent with this, we found that LOX6 promoter activity was strong in the apical region of rosettes. The LOX6 promoter was active in and near developing xylem cells and in expression domains we term subtrichomal mounds.
机译:植物中可诱发伤害的防御机制部分由茉莉酸酯,脂肪酸衍生的调节剂控制,这些调节剂在叶片受伤后30 s内开始积累。使用液相色谱串联质谱法,我们试图鉴定在190个时间内在拟南芥中以19个单,双,三和四突变体组合衍生的伤口诱导的茉莉酸酯合成的13-脂加氧酶(13-LOXs)。该植物中有四个13-LOX基因。发现所有四个13-LOX都有助于受伤叶片的茉莉酸酯合成:其中LOX6显示出独特的行为。 LOX6对茉莉酸酯合成的相对贡献随距叶尖伤口的距离增加而增加,并且LOX6是在受伤叶片远端的叶片中开始早期茉莉酸酯合成所需的唯一13-LOX。比较食草斜纹夜蛾摄食lox2-1 lox3B lox4A lox6A四重突变体和lox2-1 lox3B lox4A三重突变体的食草测定法揭示了茎尖分生组织的LOX6防御作用。与此相一致,我们发现LOX6启动子活性在玫瑰花结的顶端区域很强。 LOX6启动子在发展中的木质部细胞中和附近活跃,在表达结构域中我们称之为亚三角丘。

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