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A simple approach to evaluate behavioral responses of insect herbivores to olfactory and visual cues simultaneously: the double stacked y-tube device and portable volatile collection system

机译:一种简单的方法,可以同时评估昆虫草食与嗅觉和视觉提示的行为响应:双层堆放的Y管装置和便携式易失性收集系统

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Insect herbivores use olfactory and visual cues during host plant finding. Although insect responses to these cues typically are assessed separately, in nature herbivores respond to olfactory and visual cues simultaneously. We demonstrate the functionality of a "double-stacked y-tube device" (D-SYD) to measure bioassay responses of a specialist herbivore to olfactory and visual cues of potential host plants either presented individually or in combination. We tested the ability of the Eurasian specialist seed-feeding weevil, Mogulones borraginis, to distinguish between its Eurasian host, Cynoglossum officinale, which is invasive in North America, and a closely related confamilial native North American non-target, Andersonglossum occidentale. Weevils distinguished C. officinale from A. occidentale based on olfactory and visual cues. When olfactory and visual cues were offered simultaneously, weevils preferentially selected C. officinale more strongly and more rapidly than when either single cue was offered. When olfactory and visual cues were mismatched, weevils were no longer able to discriminate between the plant species and exhibited longer response times. There were no differences in behavioral responses to floral scents from greenhouse-propagated plants and those collected from plants in the field using a portable volatile collection system (PVCS). The bioassay approach demonstrated here using D-SYD and PVCS can assess behavioral responses of insects to olfactory and visual plant cues alone or together and measure their relative contributions to host discrimination. This will have utility for theoretical and applied questions concerning the host selection behavior of insect herbivores.
机译:昆虫食草动物在宿主植物发现期间使用嗅觉和视觉提示。尽管对这些提示的昆虫反应通常是单独评估的,但在自然中,食草动物同时对嗅觉和视觉提示进行响应。我们证明了“双层堆管设备”(D-SYD)的功能,以测量专家食草动物的生物测定应答,以单独或组合呈现潜在宿主工厂的嗅觉和视觉提示。我们测试了欧亚专家种子饲养的象鼻虫,莫富植物Borraginis的能力,以区分其欧亚宿主,在北美侵入的欧亚人宿主,以及一个密切相关的Convilial Native Norl-Target,Andersonglossum Occidentale。象鼻虫从A. offidentale基于嗅觉和视觉提示的offights。当同时提供嗅觉和视觉线索时,象鼻虫优先选择C. Officinale,而不是在提供单一提示时更快地迅速迅速。当嗅觉和视觉线索不匹配时,象鼻虫不再能够区分植物物种并表现出更长的响应时间。从温室繁殖的植物和使用便携式挥发收集系统(PVC)从场中收集的植物中的花香的行为反应没有差异。使用D-SYD和PVC在此进行的生物测定方法可以单独或一起评估昆虫对嗅觉和视觉植物线索的行为响应,并测量它们对宿主歧视的相对贡献。这将有纯粹有关昆虫食草动物的宿主选择行为的理论和应用问题。

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