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首页> 外文期刊>Entomologia Experimentalis et Applicata >Electrophysiological and behavioral identification of a volatile blend involved in host location of female strawberry sap beetle, Stelidota geminata
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Electrophysiological and behavioral identification of a volatile blend involved in host location of female strawberry sap beetle, Stelidota geminata

机译:雌性草莓树液甲虫Slididota geminata寄主位置中涉及的挥发性混合物的电生理和行为鉴定

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摘要

The strawberry sap beetle (SSB), Stelidota geminata (Say) (Coleoptera: Nitidulidae), is a serious direct pest of strawberries in the northeastern USA. To date, however, no food or pheromone-based attractants for SSB have been identified. A combination of solid-phase microextraction, adsorbent sampling, gas chromatography coupled with electroantennographic detection (GC-EAD), and gas chromatography-mass spectrometry was used to identify volatile compounds from strawberry fruit acting as behavioral attractants for female SSB. Consistent EAD activity was obtained for 16 ester compounds. In Y-tube olfactometer bioassays, the blend of these 16 compounds mixed at a ratio observed from strawberry headspace was significantly more attractive to adult female SSB than a control. Female SSB showed no difference in response levels between the 16-component blend and a strawberry volatile adsorbent extract. Our data indicate that the combination of the ethyl acetate with some or all of the remaining 15 compounds is necessary for this ester blend to be attractive to female SSB. Previously identified host volatiles found for other species of sap beetles included mostly alcohols associated with over-ripe fruit rather than the esters identified from ripe strawberries for SSB. A highly attractive synthetic food odor will be useful for developing new management options for SSB.
机译:草莓树液甲虫(SSB),Slidlidota geminata(Say)(鞘翅目:Nitidulidae),是美国东北部草莓的一种严重的直接害虫。然而,迄今为止,尚未发现用于SSB的基于食物或信息素的引诱剂。结合使用固相微萃取,吸附剂采样,气相色谱与电造影检测(GC-EAD)和气相色谱-质谱联用,从草莓果实中鉴定出作为女性SSB行为诱因的挥发性化合物。对于16种酯化合物,获得了一致的EAD活性。在Y型管嗅觉仪生物测定法中,以从草莓顶空观察到的比例混合的这16种化合物的混合物对成年雌性SSB的吸引力明显大于对比例。雌性SSB在16种成分的混合物和草莓挥发性吸附剂提取物之间的响应水平上没有差异。我们的数据表明,乙酸乙酯与其余15种化合物中的一些或全部结合使用对于使该酯混合物对女性SSB有吸引力是必要的。先前发现的其他树液甲虫物种的宿主挥发物主要包括与成熟水果有关的醇类,而不是成熟草莓中用于SSB的酯类。极具吸引力的合成食品气味将有助于开发SSB的新管理选项。

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