Vuts József, Woodcock Christine M, Caulfield John C, Powers Stephen J, Pickett John A, Birkett Michael A
Rothamsted Research, Harpenden, UK.
Pest Manag Sci. 2018 Mar 8. doi: 10.1002/ps.4903.
The response of virgin females of the legume pest Acanthoscelides obtectus (Coleoptera: Bruchidae) to headspace extracts of volatiles collected from flowers of a nectar plant, Daucus carota, was investigated using behaviour (four-arm olfactometry) and coupled gas chromatography-electroantennography (GC-EAG).
Odours from inflorescences were significantly more attractive to virgin female beetles than clean air. Similarly, a sample of volatile organic compounds (VOCs) collected by air entrainment (dynamic headspace collection) was more attractive to beetles than a solvent control. In coupled GC-EAG experiments with beetle antennae and the VOC extract, six components showed EAG activity. Using coupled GC-mass spectrometry (GC-MS) and GC peak enhancement with authentic standards, the components were identified as α-pinene (S:R 16:1), sabinene, myrcene, limonene (S:R 1:3), terpinolene and (S)-bornyl acetate. Females preferred the synthetic blend of D. carota EAG-active volatiles to the solvent control in bioassays. When compared directly, odours of D. carota inflorescences elicited stronger positive behaviour than the synthetic blend.
This is the first report of behaviourally active volatiles linked to pollen location for A. obtectus, and development of the six-component blend is being pursued, which could underpin the design of semiochemical-based field management approaches against this major pest of stored products. © 2018 Society of Chemical Industry.
采用行为学方法(四臂嗅觉仪)和气相色谱 - 触角电位联用技术(GC - EAG),研究了豆科害虫菜豆象(鞘翅目:豆象科)未交配雌虫对从花蜜植物胡萝卜花中收集的挥发性物质顶空提取物的反应。
花序气味对未交配雌虫的吸引力显著高于清洁空气。同样,通过空气夹带法(动态顶空采集)收集的挥发性有机化合物(VOCs)样品对甲虫的吸引力也高于溶剂对照。在甲虫触角与VOC提取物的GC - EAG联用实验中,有六种成分表现出触角电位活性。通过气相色谱 - 质谱联用(GC - MS)以及使用标准品增强GC峰的方法,确定这些成分分别为α - 蒎烯(S:R 16:1)、桧烯、月桂烯、柠檬烯(S:R 1:3)、萜品油烯和(S) - 乙酸龙脑酯。在生物测定中,雌虫更喜欢胡萝卜具有触角电位活性的挥发性物质的合成混合物,而非溶剂对照。直接比较时,胡萝卜花序的气味比合成混合物引发更强的正向行为。
这是首次报道与菜豆象寻找花粉相关的具有行为活性的挥发性物质,目前正在研发六种成分的混合物,这可能为基于信息素的田间管理方法设计提供依据,用于防治这种主要的储藏产品害虫。© 2018化学工业协会