Department of Biology, University of Ljubljana, Slovenia.
Faraday Discuss. 2020 Oct 1;223:81-97. doi: 10.1039/d0fd00075b. Epub 2020 Aug 6.
We studied the wing colouration and the compound eyes of red admiral butterflies with optical methods. We measured reflectance spectra of the wing and scales of Vanessa atalanta and modelled the thin film reflectance of the wing membrane and blue scales. We utilized the eyeshine in the compound eye of Vanessa indica to determine the spectral and polarisation characteristics of its optical sensor units, the ommatidia. Pupil responses were measured with a large-aperture optophysiological setup as reduction in the eyeshine reflection caused by monochromatic stimuli. Processing of spectral and polarisation responses of individual ommatidia revealed a random array with three types of ommatidia: about 10% contain two blue-sensitive photoreceptors, 45% have two UV-sensitive photoreceptors, and 45% have a mixed UV-blue pair. All types contain six green receptors and a basal photoreceptor. Optical modelling of the rhabdom suggests that the basal photoreceptors have a red-shifted sensitivity, which might enhance the red admiral's ability to discriminate red colours on the wing. Under daylight conditions, the red shift of the basal photoreceptor is ∼30 nm, compared to the rhodopsin spectrum template peaking at 520 nm, while the shift of green photoreceptors is ∼15 nm.
我们使用光学方法研究了红肩斑蝶的翅膀颜色和复眼。我们测量了 Vanessa atalanta 翅膀和鳞片的反射光谱,并对翅膀膜和蓝色鳞片的薄膜反射进行了建模。我们利用 Vanessa indica 复眼中的眼辉光来确定其光学传感器单元——小眼的光谱和偏振特性。我们使用大孔径光生理装置测量瞳孔反应,因为单色刺激会减少眼辉光反射。对单个小眼的光谱和偏振反应的处理揭示了一个随机排列的小眼,其中有三种小眼:约 10%的小眼含有两个蓝色感光器,45%的小眼含有两个 UV 感光器,45%的小眼含有混合的 UV-蓝色感光器。所有类型的小眼都包含六个绿色受体和一个基础感光器。光模型表明,基础感光器的敏感性红移,这可能增强了红肩斑蝶在翅膀上区分红色的能力。在日光条件下,与峰值在 520nm 的视蛋白光谱模板相比,基础感光器的红移约为 30nm,而绿色感光器的红移约为 15nm。