Agroecology and Organic Farming Group, University of Bonn, Auf dem Hügel 6, 53121 Bonn, Germany.
Faculty of Organic Agricultural Sciences, University of Kassel, Nordbahnhofstraße 1a, 37123 Witzenhausen, Germany.
Philos Trans R Soc Lond B Biol Sci. 2022 Oct 24;377(1862):20210283. doi: 10.1098/rstb.2021.0283. Epub 2022 Sep 5.
Aphids are economically and ecologically important herbivorous insects. A critical step in their life cycle is the visually guided host finding behaviour. To elucidate the role of colour in host finding of aphid spring migrants we conducted large colour trap experiments in the field and analysed aphid catch data, using trap spectral reflectance data as input. Based on known and putative photoreceptor sensitivities we developed and optimized a simple empirical colour choice model for spring migrants of different aphid species which confirmed and explained the yellow preference of these insects. In a further step, we applied multivariate statistical methods to behavioural and reflectance data, but without data on photoreceptor sensitivities, to find the wavelengths of greatest importance for the aphids' behavioural responses. This analysis confirmed the position of the green photoreceptor peak previously obtained independently with electrophysiological methods. In a final step, we applied the colour preference model to a dataset of leaf spectra. This showed that aphid visual preference would be dependent on the plants' nutritional status, with lower nitrogen input being associated with stronger preference, despite known benefits of high nitrogen levels for aphid reproduction and fitness. Ecological and evolutionary implications of these results are discussed. This article is part of the theme issue 'Understanding colour vision: molecular, physiological, neuronal and behavioural studies in arthropods'.
蚜虫是具有经济和生态重要性的草食性昆虫。它们生命周期中的一个关键步骤是视觉引导的宿主寻找行为。为了阐明颜色在蚜虫春季迁徙者寻找宿主中的作用,我们在野外进行了大型颜色诱捕实验,并使用诱捕器光谱反射率数据作为输入来分析蚜虫的捕获数据。基于已知和推测的光感受器敏感性,我们为不同蚜虫物种的春季迁徙者开发并优化了一个简单的经验颜色选择模型,该模型证实并解释了这些昆虫对黄色的偏好。在进一步的步骤中,我们应用多元统计方法对行为和反射率数据进行了分析,但没有光感受器敏感性的数据,以找到对蚜虫行为反应最重要的波长。这项分析证实了以前用生理方法独立获得的绿色光感受器峰值的位置。在最后一步,我们将颜色偏好模型应用于叶片光谱数据集。这表明,蚜虫的视觉偏好将取决于植物的营养状况,尽管高氮水平对蚜虫的繁殖和适应性有好处,但氮素输入较低会导致更强的偏好。讨论了这些结果的生态和进化意义。本文是主题为“理解颜色视觉:节肢动物的分子、生理、神经元和行为研究”的一部分。