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是什么让羽毛闪闪发光?羽毛呈现闪亮黑色的纳米结构基础。

What makes a feather shine? A nanostructural basis for glossy black colours in feathers.

机构信息

Department of Biology, Integrated Bioscience Program, University of Akron, Akron, OH 44325-3908, USA.

出版信息

Proc Biol Sci. 2011 Jul 7;278(1714):1973-80. doi: 10.1098/rspb.2010.1637. Epub 2010 Dec 1.

Abstract

Colours in feathers are produced by pigments or by nanostructurally organized tissues that interact with light. One of the simplest nanostructures is a single layer of keratin overlying a linearly organized layer of melanosomes that create iridescent colours of feather barbules through thin-film interference. Recently, it has been hypothesized that glossy (i.e. high specular reflectance) black feathers may be evolutionarily intermediate between matte black and iridescent feathers, and thus have a smooth keratin layer that produces gloss, but not the layered organization of melanosomes needed for iridescence. However, the morphological bases of glossiness remain unknown. Here, we use a theoretical approach to generate predictions about morphological differences between matte and glossy feathers that we then empirically test. Thin-film models predicted that glossy spectra would result from a keratin layer 110-180 nm thick and a melanin layer greater than 115 nm thick. Transmission electron microscopy data show that nanostructure of glossy barbules falls well within that range, but that of matte barbules does not. Further, glossy barbules had a thinner and more regular keratin cortex, as well as a more continuous underlying melanin layer, than matte barbules. Thus, their quasi-ordered nanostructures are morphologically intermediate between matte black and iridescent feathers, and perceived gloss may be a form of weakly chromatic iridescence.

摘要

羽毛的颜色是由色素或纳米结构组织与光相互作用产生的。最简单的纳米结构之一是一层覆盖在线性排列的黑素体层上的角蛋白,通过薄膜干涉产生羽小枝的虹彩颜色。最近,有人假设有光泽的(即高镜面反射率)黑色羽毛可能是介于哑光黑色和虹彩羽毛之间的进化中间产物,因此具有产生光泽的光滑角蛋白层,但没有产生虹彩所需的黑素体层的分层组织。然而,光泽度的形态基础仍然未知。在这里,我们使用理论方法来生成关于哑光和有光泽羽毛之间形态差异的预测,然后对其进行实证检验。薄膜模型预测,有光泽的光谱将来自 110-180nm 厚的角蛋白层和大于 115nm 厚的黑色素层。透射电子显微镜数据显示,有光泽的羽小枝的纳米结构在该范围内,但哑光的羽小枝不在该范围内。此外,有光泽的羽小枝的角蛋白皮质更薄、更规则,下面的黑色素层也更连续,因此它们的准有序纳米结构在形态上介于哑光黑色和虹彩羽毛之间,而感知到的光泽可能是一种弱色虹彩。

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