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Fine structural dependence of ultraviolet reflections in the King Penguin beak horn

机译:企鹅国王喙角中紫外线反射的精细结构依赖性

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The visual perception of many birds extends into the near-ultraviolet (UV) spectrum and ultraviolet is used by some to communicate. The beak horn of the King Penguin (Aptenodytes patagonicus) intensely reflects in the ultraviolet and this appears to be implicated in partner choice. In a preliminary study, we recently demonstrated that this ultraviolet reflectance has a structural basis, resulting from crystal-like photonic structures, capable of reflecting in the near-UV. The present study attempted to define the origin of the photonic elements that produce the UV reflectance and to better understand how the UV signal is optimized by their fine structure. Using light and electron microscopic analysis combined with new spectrophotometric data, we describe here in detail the fine structure of the entire King Penguin beak horn in addition to that of its photonic crystals. The data obtained reveal a one-dimensional structural periodicity within this tissue and demonstrate a direct relationship between its fine structure and its function. In addition, they suggest how the photonic structures are produced and how they are stabilized. The measured lattice dimensions of the photonic crystals, together with morphological data on its composition, permit predictions of the wavelength of reflected light. These correlate well with experimentally observed values. The way the UV signal is optimized by the fine structure of the beak tissue is discussed with regard to its putative biological role. (c) 2006 Wiley-Liss, Inc.
机译:许多鸟类的视觉感知延伸到近紫外(UV)光谱中,有些人使用紫外线进行交流。企鹅王的喙角在紫外线下强烈反射,这似乎与伴侣的选择有关。在初步研究中,我们最近证明了这种紫外线反射具有结构基础,这是由于能够在近紫外线下反射的类晶体光子结构引起的。本研究试图确定产生紫外线反射的光子元素的起源,并更好地了解如何通过其精细结构优化紫外线信号。结合光电子显微镜分析和新的分光光度数据,我们在这里详细描述了整个金企鹅喙角的精细结构以及光子晶体。获得的数据揭示了该组织内的一维结构周期性,并证明了其精细结构与其功能之间的直接关系。此外,他们提出了如何产生光子结构以及如何使其稳定的建议。测得的光子晶体的晶格尺寸以及有关其成分的形态学数据,可以预测反射光的波长。这些与实验观察值很好地相关。关于其可能的生物学作用,讨论了通过喙组织的精细结构优化紫外线信号的方式。 (c)2006年Wiley-Liss,Inc.

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