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首页> 外文期刊>Entomologia Experimentalis et Applicata >Electrophysiological responses of male and female Amyelois transitella antennae to pistachio and almond host plant volatiles
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Electrophysiological responses of male and female Amyelois transitella antennae to pistachio and almond host plant volatiles

机译:雌雄对生阿米洛伊转运体触角对开心果和杏仁寄主植物挥发物的电生理响应

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摘要

The polyphagous navel orangeworm, Amyelois transitella Walker (Lepidoptera: Pyralidae), is a major insect pest of almonds and pistachios in California (USA). Amyelois transitella moths have proven difficult to monitor and control for over 5 decades; however, recent reports indicate progress towards attractants using pheromone or semiochemical blends. Despite advances of a host plant volatile attractant blend that is effective for monitoring moth populations in almond orchards, the blend's attractancy and capture efficacy of A.transitella has not translated to pistachio orchards. The apparent orchard specificity of A.transitella to the blend suggests a different composition of host plant volatiles is needed to either improve the current blend or a new blend formulation is required for monitoring in pistachio orchards. One objective of this study was to evaluate available individual host volatiles via a standardised puff method in combination with electroantennographic analysis. In total 105 volatiles were evaluated individually for their ability to elicit an electrophysiological chemoreception response from excised male and female A.transitella antennae. Male antennae responded significantly higher to alcohols, aldehydes, alkyls, aromatics, and ketones. Female antennae responded significantly higher to benzenoids, monoterpenes, sesquiterpenes, and short-chain alcohols.
机译:多食性肚脐橙虫(Amyeloistransellaella Walker,鳞翅目:Pyralidae)是加利福尼亚州(美国)杏仁和开心果的主要害虫。事实证明,在过去的5年多的时间内,很难监测和控制Amyelois transtransella飞蛾。然而,最近的报道表明,使用信息素或信息化学混合物在引诱剂方面取得了进展。尽管寄主植物挥发性引诱剂混合物可以有效监测杏仁果园中的蛾类种群,但该混合物的引诱性和捕获效率仍未转化为开心果果园。拟南芥果园对混合物的表观特异性表明,需要不同的寄主植物挥发物成分来改善目前的混合物,或者需要采用新的混合物配方对开心果园进行监测。这项研究的一个目的是通过标准化的抽吸方法结合电造影检查来评估可用的单个宿主挥发物。总共对105种挥发物进行了评估,它们从被切除的雄性和雌性短柄土壤杆菌触角引起电生理化学感受响应的能力。雄性触角对醇,醛,烷基,芳族化合物和酮的反应明显更高。女性触角对苯类化合物,单萜,倍半萜和短链醇的反应明显更高。

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