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Qualitative and Quantitative Differences in Herbivore-Induced Plant Volatile Blends from Tomato Plants Infested by Either Tuta absoluta or Bemisia tabaci

机译:番茄植株受草食动物诱导的植物挥发性混合物的定性和定量差异

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摘要

Plants release a variety of volatile organic compounds that play multiple roles in the interactions with other plants and animals. Natural enemies of plant-feeding insects use these volatiles as cues to find their prey or host. Here, we report differences between the volatile blends of tomato plants infested with the whitefly Bemisia tabaci or the tomato borer Tuta absoluta. We compared the volatile emission of: (1) clean tomato plants; (2) tomato plants infested with T. absoluta larvae; and (3) tomato plants infested with B. tabaci adults, nymphs, and eggs. A total of 80 volatiles were recorded of which 10 occurred consistently only in the headspace of T. absoluta-infested plants. Many of the compounds detected in the headspace of the two herbivory treatments were emitted at different rates. Plants damaged by T. absoluta emitted at least 10 times higher levels of many compounds compared to plants damaged by B. tabaci and intact plants. The multivariate separation of T. absoluta-infested plants from those infested with B. tabaci was due largely to the chorismate-derived compounds as well as volatile metabolites of C18-fatty acids and branched chain amino acids that had higher emission rates from T. absoluta-infested plants, whereas the cyclic sesquiterpenes α- and β-copaene, valencene, and aristolochene were emitted at significantly higher levels from B. tabaci-infested plants. Our findings imply that feeding by T. absoluta and B. tabaci induced emission of volatile blends that differ quantitatively and qualitatively, providing a chemical basis for the recently documented behavioral discrimination by two generalist predatory mirid species, natural enemies of T. absoluta and B. tabaci employed in biological control.Electronic supplementary materialThe online version of this article (doi:10.1007/s10886-016-0807-7) contains supplementary material, which is available to authorized users.
机译:植物释放出各种挥发性有机化合物,这些化合物在与其他动植物的相互作用中起多种作用。以植物为食的昆虫的天敌利用这些挥发物作为线索来寻找其猎物或宿主。在这里,我们报告了粉虱烟粉虱或番茄蛀虫Tuta absoluta侵染的番茄植株的挥发性混合物之间的差异。我们比较了以下物质的挥发性排放:(1)清洁番茄植株; (2)被绝对黑麦草幼虫侵染的番茄植株; (3)感染了烟粉虱成虫,若虫和卵的番茄植株。总共记录了80种挥发物,其中10种仅在绝对黑穗病菌侵染的植物的顶空一致地发生。在两种食草处理的顶空中检测到的许多化合物以不同的速率排放。与被烟粉虱和完整植物破坏的植物相比,被绝对黑麦草破坏的植物释放出的多种化合物的含量至少高出十倍。绝对病原菌感染后的烟叶病原菌的多变量分离主要是由于分支杆菌衍生的化合物以及C18脂肪酸和支链氨基酸的挥发性代谢产物,这些代谢物的绝对产率高于绝对病原菌。感染了植物,而环状倍半萜烯的α-和β-可卡因,瓦伦烯和马兜铃烯的排放量则明显高于烟粉虱。我们的发现暗示,绝对黑麦草和烟粉虱的进食会导致挥发性混合物的排放在数量和质量上有所不同,这为最近记录的两种通体掠夺性rid虫物种,绝对黑麦草和黑麦草的天敌提供了化学基础。电子控制的补充材料本文的在线版本(doi:10.1007 / s10886-016-0807-7)包含补充材料,授权用户可以使用。

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