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The structure–function relationships of a natural nanoscale photonic device in cuttlefish chromatophores

机译:墨鱼色谱中天然纳米级光子器件的结构-功能关系

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摘要

Cuttlefish, Sepia officinalis, possess neurally controlled, pigmented chromatophore organs that allow rapid changes in skin patterning and coloration in response to visual cues. This process of adaptive coloration is enabled by the 500% change in chromatophore surface area during actuation. We report two adaptations that help to explain how colour intensity is maintained in a fully expanded chromatophore when the pigment granules are distributed maximally: (i) pigment layers as thin as three granules that maintain optical effectiveness and (ii) the presence of high-refractive-index proteins—reflectin and crystallin—in granules. The latter discovery, combined with our finding that isolated chromatophore pigment granules fluoresce between 650 and 720 nm, refutes the prevailing hypothesis that cephalopod chromatophores are exclusively pigmentary organs composed solely of ommochromes. Perturbations to granular architecture alter optical properties, illustrating a role for nanostructure in the agile, optical responses of chromatophores. Our results suggest that cephalopod chromatophore pigment granules are more complex than homogeneous clusters of chromogenic pigments. They are luminescent protein nanostructures that facilitate the rapid and sophisticated changes exhibited in dermal pigmentation.
机译:墨鱼乌贼具有神经控制的,有色的色素细胞器官,可以根据视觉提示快速改变皮肤的图案和色泽。致动过程中,色谱表面积的500%变化可实现这种自适应着色过程。我们报告了两种改编,它们有助于解释当颜料颗粒最大程度地分布时,如何在完全扩展的色谱中保持色彩强度:(i)像三个颗粒一样薄的颜料层,可保持光学效果,以及(ii)高折射颗粒中的索引蛋白(反射蛋白和结晶蛋白)。后者的发现,加上我们的发现,即分离出的色谱色素颗粒在650至720 nm之间发荧光,驳斥了普遍的假设,即头足类染色体仅是由全色素组成的色素器官。对颗粒结构的扰动改变了光学特性,说明了纳米结构在色谱的敏捷光学响应中的作用。我们的结果表明,头足类染色体色素颗粒比发色色素的均质簇更复杂。它们是发光蛋白纳米结构,可促进皮肤色素沉着中快速而复杂的变化。

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