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Evolution of color and vision of butterflies.

机译:蝴蝶颜色和视力的演变。

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Butterfly eyes consist of three types of ommatidia, which are more or less randomly arranged in a spatially regular lattice. The corneal nipple array and the tapetum, optical structures that many but not all butterflies share with moths, suggest that moths are ancestral to butterflies, in agreement with molecular phylogeny. A basic set of ultraviolet-, blue- and green-sensitive receptors, encountered among nymphalid butterflies, forms the basis for trichromatic vision. Screening pigments surrounding the light-receiving rhabdoms can modify the spectral sensitivity of the photoreceptors so that the sensitivity peak is in the violet, yellow, red, or even deep-red, specifically in swallowtails (Papilionidae) and whites (Pieridae), thus enhancing colour discriminability. The photoreceptor sensitivity spectra are presumably tuned to the wing colors of conspecific butterflies..
机译:蝴蝶眼由三种眼型组成,它们或多或少随机排列在空间规则的格子中。许多但不是全部蝴蝶与飞蛾共享的角膜乳头阵列和绒毡层的光学结构表明,飞蛾是蝴蝶的祖先,与分子系统发育一致。若虫蝴蝶遇到的一组基本的对紫外线,蓝色和绿色敏感的受体构成了三色视觉的基础。筛选受光横纹周围的颜料可以改变感光体的光谱敏感性,从而使敏感性峰出现在紫色,黄色,红色甚至深红色中,特别是在燕尾(Papilionidae)和白色(Pieridae)中,从而增强颜色可分辨性。感光感光度光谱大概已调整为特定蝴蝶的翅膀颜色。

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