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首页> 外文期刊>Environmental Science and Pollution Research >Electrophysiological and behavioral responses of Diaphania glauculalis males to female sex pheromone
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Electrophysiological and behavioral responses of Diaphania glauculalis males to female sex pheromone

机译:青光色男性对女性性信息素的电生理和行为反应

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The aim of this study is to identify the pheromone active component of female moths, Diaphania glauculalis, an important pest of Anthocephalus chinensis in China. The sex pheromone was extracted from sex pheromone gland extracts of virgin female moth of D. glauculalis using n-hexane, and the pheromone gland extracts of females were analyzed using coupled gas chromatography-electroantennogram detection (GC-EAD) and gas chromatography-mass spectrometry (GC-MS). The sex pheromone active components were based on the comparison the retention time and mass spectrum, with suitable synthetic compounds. (E)-11-hexadecenal (E11-16:Ald) and (E,E)-10,12-hexadecadienal (E10E12-16:Ald) were identified as the major sex pheromone components in the females. Their biological activities were evaluated in a series of electroantennogram (EAG) experiments and four-arm olfactometer assays using synthetic compounds. D. glauculalis males could be attracted by any single component, but a mixture of the E11-16:Ald and E10E12-16:Ald in a ratio of 5:5 elicited a substantial response, demonstrating that the binary blend is essential in male attraction. We therefore conclude that the aldehyde compounds, a mixture of E11-16:Ald and E10E12-16:Ald, comprise the sex pheromone components of D. glauculalis, which might be applied for insect field trapping.
机译:本研究的目的是鉴定雌蛾蛾的信息素活性成分,这是中国中华按蚊的重要害虫。利用正己烷从青冈原初蛾的雌性信息素腺提取物中提取性信息素,并使用气相色谱-电造影检测(GC-EAD)和气相色谱-质谱法分析雌性的信息素腺提取物。 (GC-MS)。性信息素活性成分是基于与合适的合成化合物的保留时间和质谱的比较。 (E)-11-十六烯醛(E11-16:Ald)和(E,E)-10,12-十六烷醛(E10E12-16:Ald)被确定为雌性中主要的性信息素成分。使用一系列合成化合物,通过一系列的电造影(EAG)实验和四臂嗅觉测定法评估了它们的生物学活性。 D. glauculalis雄性可能被任何单一成分所吸引,但是E11-16:Ald和E10E12-16:Ald的比例为5:5的混合物引起了强烈的反应,表明二元混合物对雄性吸引至关重要。因此,我们得出的结论是,醛类化合物(E11-16:Ald和E10E12-16:Ald的混合物)包含青眼石the的性信息素成分,可用于昆虫诱捕。

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