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Iridescent structural colour production in male blue-black grassquit feather barbules: the role of keratin and melanin

机译:雄性蓝黑色草quit羽毛球中的虹彩结构颜色产生:角蛋白和黑色素的作用

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摘要

Iridescent coloration plays an important role in the visual communication system of many animal taxa. It is known that iridescent structural colours result from layers of materials with different refractive indexes, which in feathers usually are keratin, melanin and air. However, the role of these materials in the production of structural iridescent coloration is still poorly documented. Despite the great interspecific variation in the organization of such structures in bird plumage, melanin layers are usually considered too opaque, suggesting its main role is to delineate the outermost keratin layer and absorb incoherently scattered stray light. We combined spectrometry, electron microscopy and thin-film optical modelling to describe the UV-reflecting iridescent colour of feather barbules of male blue-black grassquits (Volatinia jacarina), characterized by a keratin layer overlying a single melanin layer. Our models indicate that both the keratin and the melanin layers are essential for production of the observed colour, influencing the coherent scattering of light. The melanin layer in some barbules may be thin enough to allow interaction with the underlying keratin; however, individuals usually have, on an average, the minimum number of granules that optimizes absorbance by this layer. Also, we show that altering optical properties of the materials resulted in better-fitting models relative to the empirically measured spectra. These results add to previous findings concerning the influence of melanin in single-layer iridescence, and stress the importance of considering natural variation when characterizing such photonic structures.
机译:彩虹色在许多动物类群的视觉交流系统中起着重要作用。众所周知,虹彩结构色是由折射率不同的材料层产生的,这些材料在羽毛中通常是角蛋白,黑色素和空气。但是,这些材料在产生结构彩虹色中的作用仍然很少有文献记载。尽管鸟类羽毛中此类结构的组织存在很大的种间差异,但通常认为黑色素层太不透明,表明其主要作用是勾勒出最外面的角蛋白层并吸收非相干散射的杂散光。我们结合光谱学,电子显微镜和薄膜光学建模来描述雄性蓝黑色草(Volatinia jacarina)羽毛状羽毛的紫外线反射彩虹色,其特征是角蛋白层覆盖单个黑色素层。我们的模型表明,角蛋白层和黑色素层对于产生观察到的颜色必不可少,从而影响光的相干散射。某些小管中的黑色素层可能足够薄,可以与下面的角蛋白相互作用。但是,一般而言,个人通常平均拥有最少数量的颗粒,可以使该层的吸光度达到最佳。同样,我们表明,改变材料的光学性能会导致相对于经验测得的光谱而言更合适的模型。这些结果增加了以前关于黑色素在单层虹彩中的影响的发现,并强调了表征这种光子结构时考虑自然变化的重要性。

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