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被捕同类作为密度和捕获后时间函数对来自死赤拟谷盗(鞘翅目:拟步甲科)假定的尸体信息素在诱捕器中的行为反应。

The behavioral response to the putative necromones from dead Tribolium castaneum (Coleoptera: Tenebrionidae) in traps by conspecifics as a function of density and time since capture.

机构信息

USDA, Agricultural Research Service, Center for Grain and Animal Health Research, 1515 College Avenue, Manhattan, KS 66502, USA.

Department of Plant Pathology and Entomology, University of Tennessee, 370 E. J. Chapman Drive, Knoxville, TN 37996, USA.

出版信息

Environ Entomol. 2023 Dec 15;52(6):1020-1032. doi: 10.1093/ee/nvad098.

Abstract

Long-term trapping programs of stored product pests provide information for timely and accurate pest management. Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae) is a highly successful external-infesting grain pest and is frequently monitored using a commercial pitfall trap that combines pheromonal and kairomonal stimuli. However, an often overlooked component of lure-based traps is the potential for the volatile plume to change over time as individuals are captured. These now-dead insects may then release necromones altering the captures of conspecifics. In this study, we evaluated changes in (i) the behavior of T. castaneum and (ii) the relative change in volatiles over time since dead insects were added and among different densities of dead conspecifics in a commercially available kairomone oil. We used multiple behavior assays, including wind tunnel, release-recapture, and 2-way olfactometer, and performed chemical analyses via headspace collection and gas chromatography coupled with mass spectrometry. Tribolium castaneum response to the kairomone lure was not consistent among assays of density of conspecifics between 4 and 40 adults after 24 or 96 h, or time of seeding over 1-96 h or 8-11 days prior. Tested strains collected in 2012 and 2019 ruled out strain-specific differences. Oil batch effects were also ruled out as a factor contributing to the response of T. castaneum. The relative volatile composition was generally stable among the treatments despite using different seeding densities and seeding times. Given that attraction and relative volatile composition were generally unaffected by prior captures, long-term monitoring programs may be robust in their interpretability over time.

摘要

长期的储粮害虫诱捕计划为及时、准确地进行害虫管理提供了信息。赤拟谷盗(Tribolium castaneum (Herbst))(鞘翅目:拟步甲科)是一种高度成功的外部侵害谷物害虫,通常使用结合信息素和利它素刺激的商业陷阱进行监测。然而,诱捕器的一个经常被忽视的组成部分是随着个体被捕获,挥发性羽流随时间变化的可能性。这些现在已经死亡的昆虫可能会释放出信息素来改变同种个体的捕获。在这项研究中,我们评估了(i)赤拟谷盗的行为变化,以及(ii)自添加死虫以来时间和不同密度的死同种个体之间,挥发性物质相对变化的情况,在市售的利它素油中。我们使用了多种行为测定法,包括风洞、释放-捕获和 2 路嗅觉计,并通过顶空收集和气相色谱-质谱联用进行了化学分析。在 24 或 96 小时后,或在 1-96 小时或 8-11 天前播种时,赤拟谷盗对利它素诱饵的反应在不同同种个体密度的测定中并不一致,密度范围为 4 至 40 只成虫。2012 年和 2019 年采集的测试菌株排除了品系特异性差异。油批次效应也被排除为影响赤拟谷盗反应的因素。尽管使用了不同的播种密度和播种时间,但处理之间的相对挥发性组成通常是稳定的。鉴于吸引力和相对挥发性组成通常不受先前捕获的影响,长期监测计划在时间上的解释力可能是稳健的。

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