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萤火虫(Lampyris noctiluca (L.),鞘翅目:萤科)的色觉:绿蓝色色觉机制的证据

Colour vision in the glow-worm Lampyris noctiluca (L.) (Coleoptera: Lampyridae): evidence for a green-blue chromatic mechanism.

作者信息

Booth David, Stewart Alan J A, Osorio Daniel

机构信息

Sussex Centre for Neuroscience and School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9QG, UK.

出版信息

J Exp Biol. 2004 Jun;207(Pt 14):2373-8. doi: 10.1242/jeb.01044.

Abstract

Male glow-worms Lampyris noctiluca find their bioluminescent mates at night by phototaxis. There is good evidence that location of mates by lampyrid beetles is achieved by a single spectral class of photoreceptor, whose spectral sensitivity is tuned to the bioluminescent spectrum emitted by conspecifics, and is achromatic. We ask whether glow-worm phototaxis involves interactions between two spectral classes of photoreceptor. Binary choice experiments were conducted in which males were presented with artificial light stimuli that differ in spectral composition. The normal preference for a green stimulus (lambdamax=555 nm), corresponding to the bioluminescence wavelength produced by signalling females, was significantly reduced by adding a blue (lambdamax=485 nm) component to the signal. This implies an antagonistic interaction between long- and short-wavelength sensitive photoreceptors, suggesting colour vision based on chromatic opponency. Cryosections showed a band of yellow filter pigment in the fronto-dorsal region of the male compound eye, which could severely constrain colour vision in the dim conditions in which the insects signal. This apparent paradox is discussed in the context of the distribution of the pigment within the eye and the photic niche of the species.

摘要

雄性萤火虫(欧洲黄萤)在夜间通过趋光性找到发光的配偶。有充分证据表明,萤科甲虫通过单一光谱类别的光感受器来定位配偶,该光感受器的光谱敏感性与同种个体发出的生物发光光谱相匹配,且是无色的。我们探究萤火虫的趋光性是否涉及两种光谱类别的光感受器之间的相互作用。进行了二元选择实验,向雄性萤火虫呈现光谱组成不同的人工光刺激。通过在信号中添加蓝色(λmax = 485 nm)成分,对绿色刺激(λmax = 555 nm,对应于发出信号的雌性萤火虫产生的生物发光波长)的正常偏好显著降低。这意味着长波长和短波长敏感光感受器之间存在拮抗相互作用,表明基于颜色拮抗的色觉。冷冻切片显示雄性复眼前背区域有一条黄色滤光色素带,这可能会在昆虫发出信号的昏暗条件下严重限制色觉。本文结合色素在眼睛内的分布以及该物种的光生态位来讨论这一明显的矛盾现象。

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