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用于昆虫研究或监测项目的光诱生物测定的关键要素。

Key Elements of Photo Attraction Bioassay for Insect Studies or Monitoring Programs.

作者信息

Cohnstaedt Lee W, Disberger Jordan C, Paulsen Eric, Duehl Adrian J

机构信息

Arthropod-Borne Animal Diseases Research Unit, Center for Grain and Animal Health Research, Agricultural Research Service, United States Department of Agriculture;

Arthropod-Borne Animal Diseases Research Unit, Center for Grain and Animal Health Research, Agricultural Research Service, United States Department of Agriculture.

出版信息

J Vis Exp. 2018 Jul 26(137):57445. doi: 10.3791/57445.

Abstract

Optimized visual attractants will increase insect trapping efficiency by using the target insect's innate behaviors (positive photo-taxis) as a means to lure the insect into a population control or monitoring trap. Light emitting diodes (LEDs) have created customizable lighting options with specific wavelengths (colors), intensities, and bandwidths, all of which can be customized to the target insects. Photo-attraction behavioral bioassays can use LEDs to optimize the attractive color(s) for an insect species down to specific life history stages or behaviors (mating, feeding, or seeking shelter). Researchers must then confirm the bioassay results in the field and understand the limited attractive distance of the visual attractants. The cloverleaf bioassay arena is a flexible method to assess photo attraction while also assessing a range of natural insect behaviors such as escape and feeding responses. The arena can be used for terrestrial or aerial insect experiments, as well as diurnal, and nocturnal insects. Data collection techniques with the arena are videotaping, counting contact with the lights, or physically collecting the insects as they are attracted towards the lights. The assay accounts for insects that make no-choice and the arenas can be single (noncompetitive) color or multiple (competitive) colors. The cloverleaf design causes insects with strong thigmotaxis to return to the center of the arena where they can view all the options in a competitive LED tests. The cloverleaf arena presented here has been used with mosquitoes, bed bugs, Hessian fly, house flies, biting midges, red flour beetles, and psocids. Bioassays are used to develop accurate and effective insect traps to guide the development and optimization of insect traps used to monitor pest population fluctuations for disease vector risk assessments, the introduction of invasive species, and/or be used for population suppression.

摘要

优化后的视觉引诱剂将利用目标昆虫的先天行为(正向趋光性),把昆虫引诱到种群控制或监测诱捕器中,从而提高昆虫诱捕效率。发光二极管(LED)提供了可定制的照明选项,具有特定的波长(颜色)、强度和带宽,所有这些都可以针对目标昆虫进行定制。光吸引行为生物测定可以使用LED来优化针对某一昆虫物种直至特定生活史阶段或行为(交配、进食或寻找庇护所)的吸引颜色。研究人员随后必须在实地确认生物测定结果,并了解视觉引诱剂有限的吸引距离。苜蓿叶形生物测定场是一种灵活的方法,可用于评估光吸引,同时还能评估一系列自然昆虫行为,如逃避和进食反应。该场地可用于陆生或空中昆虫实验,以及昼行性和夜行性昆虫。使用该场地的数据收集技术包括录像、统计与灯光的接触次数,或在昆虫被灯光吸引时实际收集昆虫。该测定考虑了无选择的昆虫,场地可以是单一(非竞争性)颜色或多种(竞争性)颜色。苜蓿叶形设计使具有强烈趋触性的昆虫回到场地中心,在那里它们可以在竞争性LED测试中查看所有选项。这里介绍的苜蓿叶形场地已用于蚊子、臭虫、麦秆蝇、家蝇、蠓、赤拟谷盗和啮虫。生物测定用于开发准确有效的昆虫诱捕器,以指导用于监测害虫种群波动以进行病媒风险评估、入侵物种引入和/或用于种群抑制的昆虫诱捕器的开发和优化。

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本文引用的文献

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