McDonald Luke T, Finlayson Ewan D, Wilts Bodo D, Vukusic Pete
Department of Physics and Astronomy, University of Exeter, Stocker Road, Exeter EX4 4QL, UK.
School of Biological, Earth and Environmental Sciences, University College Cork, North Mall Campus, Cork, Republic of Ireland.
Interface Focus. 2017 Aug 6;7(4):20160129. doi: 10.1098/rsfs.2016.0129. Epub 2017 Jun 16.
Helicoidal architectures comprising various polysaccharides, such as chitin and cellulose, have been reported in biological systems. In some cases, these architectures exhibit stunning optical properties analogous to ordered cholesteric liquid crystal phases. In this work, we characterize the circularly polarized reflectance and optical scattering from the cuticle of the beetle (Coleoptera: Scarabaeidae: Cetoniinae) using optical experiments, simulations and structural analysis. The selective reflection of left-handed circularly polarized light is attributed to a Bouligand-type helicoidal morphology within the beetle's exocuticle. Using electron microscopy to inform electromagnetic simulations of this anisotropic stratified medium, the inextricable connection between the colour appearance of and the periodicity of its helicoidal rotation is shown. A close agreement between the model and the measured reflectance spectra is obtained. In addition, the elytral surface of possesses a blazed diffraction grating-like surface structure, which affects the diffuse appearance of the beetle's reflected colour, and therefore potentially enhances crypsis among the dense foliage of its rainforest habitat.
在生物系统中,已经报道了由各种多糖(如几丁质和纤维素)构成的螺旋结构。在某些情况下,这些结构呈现出与有序胆甾相液晶相类似的惊人光学特性。在这项工作中,我们通过光学实验、模拟和结构分析,对甲虫(鞘翅目:金龟科:花金龟亚科)角质层的圆偏振反射和光散射进行了表征。左旋圆偏振光的选择性反射归因于甲虫外表皮内的布利冈德型螺旋形态。利用电子显微镜为这种各向异性分层介质的电磁模拟提供信息,展示了甲虫颜色外观与其螺旋旋转周期性之间的紧密联系。模型与实测反射光谱之间取得了密切的一致性。此外,甲虫鞘翅表面具有类似闪耀衍射光栅的表面结构,这影响了甲虫反射颜色的漫反射外观,因此可能增强其在雨林栖息地茂密树叶中的隐蔽性。