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昆虫眼睛的颜色。

Colour in the eyes of insects.

作者信息

Stavenga D G

机构信息

Department of Neurobiophysics, University of Groningen, 9747 AG Groningen, The Netherlands.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2002 Jun;188(5):337-48. doi: 10.1007/s00359-002-0307-9. Epub 2002 Apr 13.

Abstract

Many insect species have darkly coloured eyes, but distinct colours or patterns are frequently featured. A number of exemplary cases of flies and butterflies are discussed to illustrate our present knowledge of the physical basis of eye colours, their functional background, and the implications for insect colour vision. The screening pigments in the pigment cells commonly determine the eye colour. The red screening pigments of fly eyes and the dorsal eye regions of dragonflies allow stray light to photochemically restore photoconverted visual pigments. A similar role is played by yellow pigment granules inside the photoreceptor cells which function as a light-controlling pupil. Most insect eyes contain black screening pigments which prevent stray light to produce background noise in the photoreceptors. The eyes of tabanid flies are marked by strong metallic colours, due to multilayers in the corneal facet lenses. The corneal multilayers in the gold-green eyes of the deer fly Chrysops relictus reduce the lens transmission in the orange-green, thus narrowing the sensitivity spectrum of photoreceptors having a green absorbing rhodopsin. The tapetum in the eyes of butterflies probably enhances the spectral sensitivity of proximal long-wavelength photoreceptors. Pigment granules lining the rhabdom fine-tune the sensitivity spectra.

摘要

许多昆虫物种的眼睛颜色较深,但也常常呈现出独特的颜色或图案。本文讨论了一些苍蝇和蝴蝶的典型案例,以阐述我们目前对眼睛颜色的物理基础、其功能背景以及对昆虫颜色视觉的影响的认识。色素细胞中的筛选色素通常决定眼睛的颜色。苍蝇眼睛和蜻蜓背眼区域的红色筛选色素能使杂散光通过光化学作用恢复光转化的视觉色素。光感受器细胞内的黄色色素颗粒起到类似作用,它们作为控制光线的瞳孔。大多数昆虫的眼睛含有黑色筛选色素,可防止杂散光在光感受器中产生背景噪声。虻蝇的眼睛具有强烈的金属色,这是由于角膜小眼透镜中的多层结构所致。鹿虻金绿眼睛中的角膜多层结构降低了橙绿色光的透镜透射率,从而缩小了具有绿色吸收视紫红质的光感受器的敏感光谱范围。蝴蝶眼睛中的反光层可能增强了近端长波长光感受器的光谱敏感性。横纹周围排列的色素颗粒微调敏感光谱。

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