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Exaggeration and suppression of iridescence: the evolution of two-dimensional butterfly structural colours

机译:夸大和抑制虹彩:二维蝴蝶结构颜色的演变

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摘要

Many butterfly species possess ‘structural’ colour, where colour is due to optical microstructures found in the wing scales. A number of such structures have been identified in butterfly scales, including three variations on a simple multi-layer structure. In this study, we optically characterize examples of all three types of multi-layer structure, as found in 10 species. The optical mechanism of the suppression and exaggeration of the angle-dependent optical properties (iridescence) of these structures is described. In addition, we consider the phylogeny of the butterflies, and are thus able to relate the optical properties of the structures to their evolutionary development. By applying two different types of analysis, the mechanism of adaptation is addressed. A simple parsimony analysis, in which all evolutionary changes are given an equal weighting, suggests convergent evolution of one structure. A Dollo parsimony analysis, in which the evolutionary ‘cost’ of losing a structure is less than that of gaining it, implies that ‘latent’ structures can be reused.
机译:许多蝴蝶物种具有“结构”色,其颜色是由于机翼鳞片中发现的光学微结构所致。已经在蝶形标尺上确定了许多这样的结构,包括在简单的多层结构上的三个变体。在这项研究中,我们从光学角度表征了在10种中发现的所有三种类型的多层结构的示例。描述了抑制和夸大这些结构的与角度相关的光学特性(虹膜)的光学机理。此外,我们考虑了蝴蝶的系统发​​育,因此能够将结构的光学特性与其进化发展联系起来。通过应用两种不同类型的分析,可以解决适应机制。一个简单的简约分析(其中所有演化变化都赋予相同的权重)表明一种结构的收敛演化。 Dollo简化分析表明,失去结构的进化“成本”小于获得结构的进化“成本”,这意味着“潜在”结构可以重复使用。

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