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α-Ionone an Apocarotenoid Induces Plant Resistance to Western Flower Thrips Frankliniella occidentalis Independently of Jasmonic Acid

机译:α-紫罗兰素一种类古生物碱可独立于茉莉酸而诱导植物对西花蓟马富兰克氏菌的抗性

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摘要

Apocarotenoids, such as β-cyclocitral, α-ionone, β-ionone, and loliolide, are derived from carotenes via chemical or enzymatic processes. Recent studies revealed that β-cyclocitral and loliolide play an important role in various aspects of plant physiology, such as stress responses, plant growth, and herbivore resistance. However, information on the physiological role of α-ionone is limited. We herein investigated the effects of α-ionone on plant protection against herbivore attacks. The pretreatment of whole tomato ( ) plants with α-ionone vapor decreased the survival rate of western flower thrips ( ) without exhibiting insecticidal activity. Exogenous α-ionone enhanced the expression of defense-related genes, such as basic β-1,3-glucanase and basic chitinase genes, in tomato leaves, but not that of jasmonic acid (JA)- or loliolide-responsive genes. The pretreatment with α-ionone markedly decreased egg deposition by western flower thrips in the JA-insensitive ( ) mutant . We also found that common cutworm ( a) larvae fed on α-ionone-treated tomato plants exhibited a reduction in weight. These results suggest that α-ionone induces plant resistance to western flower thrips through a different mode of action from that of JA and loliolide.
机译:类胡萝卜素,例如β-环柠檬醛,α-紫罗兰酮,β-紫罗兰酮和loliolide,是通过化学或酶促方法从胡萝卜素衍生而来的。最近的研究表明,β-环柠檬醛和环戊内酯在植物生理学的各个方面都发挥着重要作用,例如胁迫响应,植物生长和草食动物抗性。但是,关于α-紫罗兰酮的生理作用的信息是有限的。我们在本文中研究了α-紫罗兰酮对植物防御草食动物攻击的作用。用α-紫罗兰酮蒸气对整个番茄()植物进行预处理会降低西花蓟马()的成活率,而没有表现出杀虫活性。外源α-紫罗兰酮可增强番茄叶片中防御相关基因(例如基本β-1,3-葡聚糖酶和碱性几丁质酶基因)的表达,但不会增强茉莉酸(JA)或loliolide反应基因的表达。在JA不敏感()突变体中,α-紫罗兰酮预处理显着减少了西方花蓟马产卵的过程。我们还发现,以α-紫罗兰酮处理的番茄植物为食的普通角虫(a)幼虫体重减轻。这些结果表明,α-紫罗兰酮通过与JA和loliolide不同的作用方式诱导植物对西花蓟马的抗性。

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