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优化陷阱的颜色需要从昆虫的视角来看。

Optimising the colour of traps requires an insect's eye view.

机构信息

Department of Life Sciences, Aberystwyth University, Aberystwyth, UK.

Department of Biosciences, Swansea University, Swansea, UK.

出版信息

Pest Manag Sci. 2024 Mar;80(3):931-934. doi: 10.1002/ps.7790. Epub 2023 Oct 13.

Abstract

Colour is a critical property of many traps used to control or monitor insect pests, and applied entomologists continue to devote time and effort to improving colour for greater trapping efficiency. This work has often been guided by human colour perceptions, which differ greatly from those of the pests being studied. As a result, trap development can be a laborious process that is heavily reliant on trial and error. However, the responses of an insect's photoreceptors to a given trap colour can be calculated using well-established procedures. Photoreceptor responses represent sensory inputs that drive insect behaviour, and if their relationship to insect attraction can be determined or hypothesised, they provide metrics that can guide the rational optimisation of trap colour. This approach has recently been used successfully in separate studies of tsetse flies and thrips, but could be applied to a wide diversity of pest insects. Here we describe this approach to facilitate its use by applied entomologists. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

颜色是许多用于控制或监测害虫的诱捕器的关键特性,应用昆虫学家继续投入时间和精力来改进颜色,以提高诱捕效率。这项工作通常受到人类颜色感知的指导,而人类的颜色感知与研究中的害虫有很大的不同。因此,诱捕器的开发可能是一个费力的过程,严重依赖于反复试验。然而,昆虫感光器对给定诱捕器颜色的反应可以使用成熟的程序来计算。感光器的反应代表了驱动昆虫行为的感官输入,如果可以确定或假设它们与昆虫吸引力的关系,那么它们就提供了可以指导诱捕器颜色合理优化的指标。这种方法最近在对采采蝇和蓟马的单独研究中得到了成功应用,但可以应用于广泛的害虫昆虫。在这里,我们描述了这种方法,以方便应用昆虫学家使用。© 2023 作者。害虫管理科学由 John Wiley & Sons Ltd 代表化学工业协会出版。

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