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首页> 外文期刊>Molecular Plant-Microbe Interactions >Ethylene Signaling Modulates Herbivore-Induced Defense Responses in the Model Legume Medicago truncatula
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Ethylene Signaling Modulates Herbivore-Induced Defense Responses in the Model Legume Medicago truncatula

机译:乙烯信号调节豆科植物紫花苜蓿模型中草食动物引起的防御反应。

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One or more effectors in the labial saliva (LS) of generalist Noctuid caterpillars activate plant signaling pathways to modulate jasmonate (JA)-dependent defense responses; however, the exact mechanisms involved have yet to be elucidated. A potential candidate in this phytohormone interplay is the ethylene (ET) signaling pathway. We compared the biochemical and molecular responses of the model legume Medicago truncatula and the ET-insensitive skl mutant to herbivory by fourth instar Spodoptera exigua (Hübner) caterpillars with intact or impaired LS secretions. Cellular oxidative stress increases rapidly after herbivory, as evidenced by changes in oxidized-to-reduced ascorbate (ASC) and glutathione (GSH) ratios. The caterpillar-specific increase in GSH ratios and the LS-specific increase in ASC ratios are alleviated in the skl mutant, indicating that ET signaling is required. Ten hours postherbivory, markers of the JA and JA/ET pathways are differentially expressed; MtVSP is induced and MtHEL is repressed in a caterpillar LS- and ET-independent manner. In contrast, expression of the classic marker of the systemic acquired resistance pathway, MtPR1, is caterpillar LS-dependent and requires ET signaling. Caterpillar LS further suppresses the induction of JA-related trypsin inhibitor activity in an ET-dependent manner. Findings suggest that ET is involved in the caterpillar LS-dependent, salicylic acid/NPR1-mediated attenuation of JA-dependent induced responses.
机译:通才夜蛾毛虫的唾液中的一种或多种效应子可以激活植物信号传导途径,调节茉莉酸(JA)依赖性的防御反应。然而,所涉及的确切机制尚未阐明。这种植物激素相互作用的潜在候选者是乙烯(ET)信号传导途径。我们比较了具有完整或受损的LS分泌的四龄幼虫Spodoptera exigua(Hübner)毛虫对模型豆科植物苜蓿紫花苜蓿和对ET不敏感的skl突变体对草食动物的生化和分子反应。食草后细胞的氧化应激迅速增加,这表现为氧化抗坏血酸(ASC)和谷胱甘肽(GSH)比率的变化。 skl突变体减轻了GSH比率的毛虫特异性增加和ASC比率的LS特异性增加,表明需要ET信号传导。食草后十小时,JA和JA / ET途径的标志物差异表达。诱导MtVSP,并以不依赖于毛虫的LS和ET的方式抑制MtHEL。相反,系统获得性抗性途径的经典标志物MtPR1的表达是毛虫LS依赖性的,需要ET信号传导。卡特彼勒LS以ET依赖性方式进一步抑制JA相关胰蛋白酶抑制剂活性的诱导。研究结果表明,ET参与了毛虫的LS依赖性,水杨酸/ NPR1介导的JA依赖性诱导反应的减弱。

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