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Host-locating response by the aphid parasitoid Aphidius ervi to tomato plant volatiles

机译:蚜虫类寄生蚜虫蚜对番茄植物挥发物的寄主定位响应

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The blend of volatile compounds emitted by tomato plants (Solanum lycopersicum) infested with the potato aphid (Macrosiphum euphorbiae) has been studied comparatively with undamaged plants and aphids themselves. Aphid-infested plants were significantly more attractive towards Aphidius ervi than undamaged plants and aphids themselves. Oriented response towards host-damaged plant, from which aphids were removed just before running the bioassay, did not differ from that recorded for infested plants. Collection of the volatiles and analysis by gas chromatography revealed only quantitative differences between uninfested and aphid-infested plants. Nine compounds, α-pinene, (Z)-3-hexen-1-ol, α-phellandrene, limonene, (E)-β-ocimene, p-cymene, methyl salicylate, (E)-β-caryophyllene and an unknown compound, were emitted at higher levels from aphid-infested plants than from undamaged control plants, whilst no differences were noted for hexanal, 6-methyl-5-hepten-2-one, and humulene (=α-caryophyllene). Synthetic standards of these compounds were tested in wind tunnel bioassays and all elicited a significant increase in oriented flight and landings on the target by the aphid parasitoid Aphidius ervi. (E)-β-caryophyllene resulted the most attractive towards female wasps. These results corroborate the hypothesis that the volatiles produced by the plant in response to aphid attack derive from both jasmonic and salicylic acid pathways, and are exploited by A. ervi as olfactory cues to locate its hosts.
机译:番茄植物(Solanum lycopersicum)散播的受马铃薯蚜虫(Macrosiphum euphorbiae)侵害的挥发性化合物的混合物已与未受损的植物和蚜虫进行了比较研究。蚜虫侵染的植物对蚜虫的吸引力比未受损的植物和蚜虫本身更具吸引力。对寄主受害植物的定向反应(在进行生物测定前即已去除了蚜虫)与针对受侵染植物的记录没有差异。挥发物的收集和通过气相色谱法的分析显示未侵染的和蚜虫侵染的植物之间仅存在定量差异。九种化合物,α-pine烯,(Z)-3-己烯-1-醇,α-水芹烯,柠檬烯,(E)-β-烯丙烯,对伞花烯,水杨酸甲酯,(E)-β-石竹烯和一个未知化合物蚜虫侵染的植物中的化合物排放量高于未受损的对照植物,而己醛,6-甲基-5-庚二酮和one草烯(=α-石竹烯)没有差异。这些化合物的合成标准品在风洞生物测定法中进行了测试,所有这些都引起了蚜虫类寄​​生蚜虫蚜的定向飞行和着陆的显着增加。 (E)-β-石竹烯对雌性黄蜂最有吸引力。这些结果证实了以下假说:植物响应蚜虫侵袭而产生的挥发物既来自茉莉酸途径,也来自水杨酸途径,并且被A. ervi用作嗅觉线索来定位其宿主。

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