首页> 外文期刊>Chemoecology: An International Journal Emphasizing Evolutionary Approaches to Chemical Ecology >Momordica cochinchinensis (Cucurbitaceae) leaf volatiles: semiochemicals for host location by the insect pest, Aulacophora foveicollis (Coleoptera: Chrysomelidae)
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Momordica cochinchinensis (Cucurbitaceae) leaf volatiles: semiochemicals for host location by the insect pest, Aulacophora foveicollis (Coleoptera: Chrysomelidae)

机译:苦瓜叶挥发物:虫害寄主寄主黄藻的寄主定位信息化学物质(鞘翅目:菊科)

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摘要

Aulacophora foveicollis Lucas (Coleoptera: Chrysomelidae) and Epilachna dodecastigma (Wied.) (Coleoptera: Coccinellidae) are important herbivore pests of Momordica cochinchinensis Spreng (Cucurbitaceae). The volatile organic compound (VOC) profile from undamaged and mechanically damaged plants, and from plants 24 h and 120 h following continuous feeding of adult female A. foveicollis and E. dodecastigma, was identified and quantified by GC-MS and GC-FID analyses. Twenty-two compounds were identified in volatiles of undamaged plants and in 24-h and 120-h post-insect-feeding plant volatiles; whereas 21 components were detected in volatiles of mechanically damaged plants. With the exception of four compounds, 1-heptanol, 3-octanone, acetophenone and nerolidol, the emissions of all other compounds were significantly increased following insect attack. In all plants, phytol was predominant, followed by geranyl linalool and linalool. Only 2-hexanol was unique to mechanically damaged plants, and 1-octen-3-ol and farnesyl acetone were detected in volatiles of undamaged and insect-damaged plants, but not in volatiles of mechanically damaged plants. However, none of these volatile components, when tested individually, showed attraction to A. foveicollis in Y-shaped glass tube olfactometer bioassays. Aulacophora foveicollis elicited significant preference for the whole volatile blends from insect-damaged plants compared to those of undamaged plants, and volatiles from 120-h post-E. dodecastigma feeding plants were more attractive to A. foveicollis compared to those from conspecifically damaged plants. Furthermore, the finding that A. foveicollis responds to individual synthetic compounds, 1-heptanol, 3-octanol, linalool oxide, 1-octanol, nonanal, geranyl linalool and phytol, and provide a basis for new inventions on trapping tools for pest management strategies.
机译:凹脉金龟(Coleoptera:菊科)和Epilachna dodecastigma(Wied。)(鞘翅目:Coccinellidae)是桃金娘科(葫芦科)的重要草食性害虫。通过GC-MS和GC-FID分析鉴定并定量了未受损和机械损坏的植物以及成年雌性黄曲霉和十二指肠球菌连续进食后24 h和120 h的植物中的挥发性有机化合物(VOC)分布图。在未受损植物的挥发物以及昆虫喂食后24小时和120小时的挥发物中鉴定出22种化合物。而在机械损坏的植物的挥发物中检测到21种成分。除1-庚醇,3-辛酮,苯乙酮和nerolidol这四种化合物外,所有其他化合物的排放在昆虫袭击后均显着增加。在所有植物中,植物醇占主导地位,其次是香叶基芳樟醇和芳樟醇。在机械损坏的植物中只有2-己醇是唯一的,而在未损坏和虫害的植物的挥发物中却检测到1-辛烯-3-醇和法呢基丙酮,而在机械损坏的植物中则没有检测到。然而,当单独测试时,这些挥发性成分均未在Y型玻璃管嗅觉仪生物测定法中显示出对黄曲霉的吸引力。与无损植物相比,黄单胞菌引起了对虫害植物的全部挥发性混合物和E后120小时的挥发物的极大偏好。与来自具特定危害的植物相比,十二指肠喂养植物对黄曲霉更具吸引力。此外,黄曲霉对单个合成化合物,1-庚醇,3-辛醇,芳樟醇氧化物,1-辛醇,壬醛,香叶基芳樟醇和植醇有反应的发现,为新的发明为有害生物管理策略的诱捕工具提供了基础。

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