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Hexanoic acid-induced resistance against Botrytis cinerea in tomato plants.

机译:己酸诱导的番茄植物灰霉病抗性。

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We have demonstrated that root treatment with hexanoic acid protects tomato plants against Botrytis cinerea. Hexanoic acid-induced resistance (Hx-IR) was blocked in the jasmonic acid (JA)-insensitive mutant jai1 (a coi1 homolog) and in the abscisic acid (ABA)-deficient mutant flacca (flc). Upon infection, the LoxD gene as well as the oxylipin 12-oxo-phytodienoic acid and the bioactive molecule JA-Ile were clearly induced in treated plants. However, the basal ABA levels were not altered. Hexanoic acid primed callose deposition against B. cinerea in a cultivar-dependent manner. Treated plants from Ailsa Craig, Moneymaker, and Rheinlands Ruhm showed increased callose deposition but not from Castlemart. Hexanoic acid did not prime callose accumulation in flc plants upon B. cinerea infection; therefore, ABA could act as a positive regulator of Hx-IR by enhancing callose deposition. Furthermore, although hexanoic acid protected the JA-deficient mutant defensless1 (def1), the priming for callose was higher than in the wild type. This suggests a link between JA and callose deposition in tomato. Hence, the obtained results support the idea that callose, oxylipins, and the JA-signaling pathway are involved in Hx-IR against B. cinerea. Moreover our data support the relevance of JA-signaling for basal defense against this necrotroph in tomato. Hexanoic acid also protected against Pseudomonas syringae, indicating a broad-spectrum effect for this new inducer.
机译:我们已经证明,用己酸进行根部处理可以保护番茄植株免受灰葡萄孢的侵染。在不依赖茉莉酸(JA)的突变体 jai1 (a coi1 同源物)和脱落酸(ABA)中,己酸诱导的抗性(Hx-IR)被阻断缺陷突变体 flacca ( flc )。感染后,在处理过的植物中清楚地诱导了 LoxD 基因以及脂蛋白12-氧代-植物二烯酸和生物活性分子JA-Ile。然而,基础ABA水平没有改变。己酸引发针对B的call质沉积。灰霉病以栽培品种为依托。来自Ailsa Craig,Moneymaker和Rheinlands Ruhm的处理过的植物显示出愈伤组织的沉积增加,但Castlemart没有。己酸在 B时未引发 flc 植物中的愈伤组织积累。灰质感染因此,ABA可以通过增强call的沉积来充当Hx-IR的正调节剂。此外,尽管己酸保护了JA缺陷型突变体 defensless1 ( def1 ),但call糖的引发作用高于野生型。这表明JA和番茄中的ose质沉积之间存在联系。因此,获得的结果支持这样的想法,即针对i B的Hx-IR涉及call质,脂蛋白和JA信号通路。灰质。此外,我们的数据支持JA信号对于番茄中这种坏死菌的基础防御的相关性。己酸还可以防止丁香假单胞菌的侵染,这表明这种新诱导剂具有广谱作用。

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