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首页> 外文期刊>Journal of Applied Entomology >Integrating repellent and attractant semiochemicals into a push-pull strategy for ambrosia beetles (Coleoptera: Curculionidae)
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Integrating repellent and attractant semiochemicals into a push-pull strategy for ambrosia beetles (Coleoptera: Curculionidae)

机译:将驱蚊剂和引诱剂的半化化学物质整合到Ambrosia甲虫的推拉策略中(鞘翅目:Curculionidae)

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Non-native ambrosia beetles (Coleoptera: Curculionidae), especially Xylosandrus compactus (Eichhoff), Xylosandrus crassiusculus (Motschulsky) and Xylosandrus germanus (Blandford), are destructive wood-boring pests of trees in ornamental nurseries and tree fruit orchards. Previous studies have demonstrated the adults are repelled by verbenone and strongly attracted to ethanol. We tested a "push-pull" semiochemical strategy in Ohio, Virginia and Mississippi using verbenone emitters to "push" beetles away from vulnerable trees and ethanol lures to "pull" them into annihilative traps. Container-grown trees were flood-stressed to induce ambrosia beetle attacks and then deployed in the presence or absence of verbenone emitters and a perimeter of ethanol-baited interception traps to achieve the following treatment combinations: (a) untreated control, (b) verbenone only, (c) ethanol only, and (d) verbenone plus ethanol. Verbenone and ethanol did not interact to reduce attacks on the flooded trees, nor did verbenone alone reduce attacks. The ethanol-baited traps intercepted enough beetles to reduce attacks on trees deployed in Virginia and Mississippi in 2016, but not in 2017, or in Ohio in 2016. Xylosandrus germanus, X. crassiusculus and both Hypothenemus dissimilis Zimmermann and X. crassiusculus were among the predominant species collected in ethanol-baited traps deployed in Ohio, Virginia and Mississippi, respectively. Xylosandrus germanus and X. crassiusculus were also the predominant species dissected from trees deployed in Ohio and Virginia, respectively. While the ethanol-baited traps showed promise for helping to protect trees by intercepting ambrosia beetles, the repellent "push" component (i.e., verbenone) and attractant "pull" component (i.e., ethanol) will need to be further optimized in order to implement a "push-pull" semiochemical strategy.
机译:非本地氨症甲虫(鞘翅目:Curculionidae),特别是Xylosandrus Compactus(Eichhoff),木糖和克拉斯·克雷斯队(Motschulsky)和Xylosandrus德国(Blandford),是装饰苗圃和树果园的破坏性木材无聊的害虫。以前的研究表明,成年人被verbenone排斥并强烈地吸引到乙醇。我们在俄亥俄州,弗吉尼亚州和密西西比州的“推拉”的学习策略使用verbenone发射商“推动”甲虫远离脆弱的树木和乙醇诱饵将它们拉入毁灭的陷阱。容器生长的树木被促进诱导氨虫甲虫攻击,然后在verbenone发射器的存在或不存在中部署,乙醇 - 诱发的拦截疏水阀的周边,以实现以下治疗组合:(a)未处理的对照,(b)verbenone仅(c)乙醇仅,(d)verbenone加乙醇。韦尔文酮和乙醇没有互动,以减少对淹没树木的攻击,而不是verbenone单独减少攻击。乙醇诱捕的陷阱截取了足够的甲虫,以减少2016年在弗吉尼亚州和密西西比州部署的树木的攻击,但不是在2017年,或在俄亥俄州在2016年。Xylosandrus德国,X. Crassiusculus Zimmann和X. Crassiusculus Zimmann和X. Crassiusculus分别在俄亥俄州,弗吉尼亚州和密西西比分别部署的乙醇疫苗陷阱中收集的主要物种。 Xylosandrus德国和X.Crassiusculus也分别从部署在俄亥俄州和弗吉尼亚州部署的树木的主要物种。虽然乙醇诱饵陷阱显示有助于通过拦截胺甲虫来保护树木,但需要进一步优化驱除症“推动”组分(即vergenone)和引诱剂“拉动”组分(即乙醇),以便实施“推拉”的半化学策略。

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