Conical flower cells reduce surface gloss and improve colour signal integrity for free-flying bumblebees

Q3 Agricultural and Biological Sciences Journal of Pollination Ecology Pub Date : 2021-07-09 DOI:10.26786/1920-7603(2021)606
Sakkia Wilmsen, A. Dyer, K. Lunau
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Abstract

Colour signals of flowers facilitate detection, spontaneous preference, discrimination and flower constancy by important bee pollinators. At short distances bees orient to floral colour patterns to find a landing platform and collect nutrition, potentially improving the plants’ reproductive success when multiple flowers are visited sequentially. In addition to pigments and backscattering structures within the petals’ internal layers, the epidermal micro-structure of the petals’ surface may also influence petal reflectance properties and thus influence overall colour patterns via optical effects. Gloss, i.e., shine caused by specular reflections of incident light from smooth surfaces, may for example alter the visual appearance of surfaces including flowers. We classify the epidermal surface properties of petals from 39 species of flowering plants from 19 families by means of a cell shape index, and measure the respective surface spectral reflectance from different angles. The spontaneous behavioural preferences of free flying bumblebees (Bombus terrestris) for surfaces with different micro-textures was then tested using specially prepared casts of selected flower petals. We specifically tested how the petal colour as function of the angle of incident light, surface structure and bee approach angle influences bumblebees’ spontaneous choices for artificial flowers. We observe that bumblebees spontaneously prefer artificial flowers with conical-papillate micro-structures under both multidirectional illumination and under spotlight conditions if approaching against the direction of spotlight, suggesting conical cells help promote constant signals by removing gloss that may confound the integrity of colour signalling. 
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圆锥形花细胞降低表面光泽,提高自由飞行大黄蜂的颜色信号完整性
花朵的颜色信号有助于重要蜜蜂授粉者的检测、自发偏好、辨别和花朵恒定性。在短距离内,蜜蜂会根据花朵的颜色模式来寻找着陆平台并收集营养,当依次造访多朵花时,这可能会提高植物的繁殖成功率。除了花瓣内层的色素和反向散射结构外,花瓣表面的表皮微结构也可能影响花瓣的反射特性,从而通过光学效应影响整体颜色模式。光泽,即由来自光滑表面的入射光的镜面反射引起的光泽,例如可以改变包括花朵在内的表面的视觉外观。我们通过细胞形状指数对来自19科39种开花植物的花瓣的表皮表面特性进行了分类,并从不同角度测量了各自的表面光谱反射率。然后,使用专门准备的选定花瓣模型,测试了自由飞行的大黄蜂(Bombus terrestris)对不同微纹理表面的自发行为偏好。我们特别测试了花瓣颜色作为入射光角度、表面结构和蜜蜂接近角度的函数如何影响大黄蜂自发选择人造花。我们观察到,如果大黄蜂逆着聚光灯的方向靠近,在多向照明和聚光灯条件下,它们会自发地喜欢具有圆锥形乳头状微结构的人造花,这表明圆锥形细胞通过消除可能混淆颜色信号完整性的光泽,有助于促进恒定信号。
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来源期刊
Journal of Pollination Ecology
Journal of Pollination Ecology Environmental Science-Ecology
CiteScore
1.50
自引率
0.00%
发文量
17
审稿时长
17 weeks
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