School of Mathematics, Statistics, Chemistry and Physics, Murdoch University , Perth, Western Australia 6150, Australia.
Department of Chemistry and Physics of Materials, University of Salzburg , Salzburg 5020, Austria.
J R Soc Interface. 2024 Sep;21(218):20240185. doi: 10.1098/rsif.2024.0185. Epub 2024 Sep 11.
Biophotonic nanostructures in butterfly wing scales remain fascinating examples of biological functional materials, with intriguing open questions with regard to formation and evolutionary function. One particularly interesting butterfly species, (Lycaenidae: Theclinae), develops wing scales that contain three-dimensional photonic crystals that closely resemble a single gyroid geometry. Unlike most other gyroid-forming butterflies, develops discrete gyroid crystallites with a pronounced size gradient hinting at a developmental sequence frozen in time. Here, we present a novel application of a hyperspectral (wavelength-resolved) microscopy technique to investigate the ultrastructural organization of these gyroid crystallites in dry, adult wing scales. We show that reflectance corresponds to crystallite size, where larger crystallites reflect green wavelengths more intensely; this relationship could be used to infer size from the optical signal. We further successfully resolve the red-shifted reflectance signal from wing scales immersed in refractive index liquids with varying refractive index, including values similar to water or cytosol. Such photonic crystals with lower refractive index contrast may be similar to the hypothesized nanostructural forms in the developing butterfly scales. The ability to resolve these fainter signals hints at the potential of this facile light microscopy method for analysis of nanostructure formation in developing butterflies.
蝴蝶翅膀鳞片中的生物光子纳米结构仍然是生物功能材料的迷人范例,其形成和进化功能方面存在着有趣的开放性问题。一种特别有趣的蝴蝶物种(灰蝶科:线灰蝶族),其翅膀鳞片包含与单个回旋体几何形状非常相似的三维光子晶体。与大多数其他形成回旋体的蝴蝶不同, 形成离散的回旋体微晶,具有明显的大小梯度,暗示着时间冻结的发育序列。在这里,我们提出了一种高光谱(波长分辨)显微镜技术的新应用,用于研究干燥成年翅膀鳞片中这些回旋体微晶的超微结构组织。我们表明,反射率与微晶尺寸相对应,其中较大的微晶反射绿光的强度更大;这种关系可用于从光学信号推断尺寸。我们还成功地解析了浸入折射率不同的折射指数液体中的翅膀鳞片的红移反射信号,包括类似于水或胞质溶胶的折射率值。这种具有较低折射率对比度的光子晶体可能类似于发育中的蝴蝶鳞片中假设的纳米结构形式。能够解析这些较暗信号的能力暗示了这种简单的明场显微镜方法在分析发育中的蝴蝶的纳米结构形成方面的潜力。