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Whiteflies interfere with indirect plant defense against spider mites in Lima bean

机译:粉虱干扰了利马豆中植物对蜘蛛螨的间接防御作用

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Plants under herbivore attack are able to initiate indirect defense by synthesizing and releasing complex blends of volatiles that attract natural enemies of the herbivore. However, little is known about how plants respond to infestation by multiple herbivores, particularly if these belong to different feeding guilds. Here, we report the interference by a phloem-feeding insect, the whitefly Bemisia tabaci, with indirect plant defenses induced by spider mites (Tetranychus urticae) in Lima bean (Phaseolus lunatus) plants. Additional whitefly infestation of spider-mite infested plants resulted in a reduced attraction of predatory mites (Phyto-seiulus persimilis) compared to attraction to plants infested by spider mites only. This interference is shown to result from the reduction in (E)-β-ocimene emission from plants infested by both spider mites and whiteflies. When using exogenous salicylic acid (SA) application to mimic B. tabaci infestation, we observed similar results in behavioral and chemical analyses. Phytohormone and gene-expression analyses revealed that B. tabaci infestation, as well as SA application, inhibited spider mite-induced jasmonic acid (JA) production and reduced the expression of two JA-regulated genes, one of which encodes for the P. lunatus enzyme β-ocimene synthase that catalyzes the synthesis of (E)-β-ocimene. Remarkably, B. tabaci infestation concurrently inhibited SA production induced by spider mites. We therefore conclude that in dual-infested Lima bean plants the suppression of the JA signaling pathway by whitefly feeding is not due to enhanced SA levels.
机译:受草食动物攻击的植物能够通过合成和释放吸引草食动物天敌的挥发物的复杂混合物来发起间接防御。但是,人们对植物如何应对多种食草动物的侵害知之甚少,特别是如果这些植物属于不同的饲养协会。在这里,我们报告了由韧皮部食虫,粉虱Bemisia tabaci对利马豆(Phaseolus lunatus)植物中的蜘蛛螨(Tetranychus urticae)诱导的间接植物防御的干扰。与仅对蜘蛛螨侵染的植物的吸引力相比,对蜘蛛螨侵染的植物的额外粉虱侵袭导致掠食性螨(Phyto-seiulus persimilis)的吸引力降低。该干扰被证明是由于被红蜘蛛和粉虱侵染的植物减少了(E)-β-ocimene排放。当使用外源水杨酸(SA)来模拟烟粉虱感染时,我们在行为和化学分析中观察到了相似的结果。植物激素和基因表达分析表明,烟粉虱的侵染以及SA的应用均抑制了红蜘蛛诱导的茉莉酸(JA)的产生并减少了两个JA调控基因的表达,其中一个编码P. lunatus。酶β-西门曼酸合酶,催化(E)-β-西门曼酸的合成。值得注意的是,烟粉虱的侵染同时抑制了红蜘蛛诱导的SA产生。因此,我们得出的结论是,在双重感染的利马豆植物中,粉虱饲喂对JA信号通路的抑制不是由于SA水平的提高。

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