Schnaitmann Christopher, Garbers Christian, Wachtler Thomas, Tanimoto Hiromu
Max-Planck-Institut für Neurobiologie, 82152 Martinsried, Germany.
Curr Biol. 2013 Dec 2;23(23):2375-82. doi: 10.1016/j.cub.2013.10.037. Epub 2013 Nov 21.
Color vision is commonly assumed to rely on photoreceptors tuned to narrow spectral ranges. In the ommatidium of Drosophila, the four types of so-called inner photoreceptors express different narrow-band opsins. In contrast, the outer photoreceptors have a broadband spectral sensitivity and were thought to exclusively mediate achromatic vision.
Using computational models and behavioral experiments, we demonstrate that the broadband outer photoreceptors contribute to color vision in Drosophila. The model of opponent processing that includes the opsin of the outer photoreceptors scored the best fit to wavelength discrimination data. To experimentally uncover the contribution of individual photoreceptor types, we restored phototransduction of targeted photoreceptor combinations in a blind mutant. Dichromatic flies with only broadband photoreceptors and one additional receptor type can discriminate different colors, indicating the existence of a specific output comparison of the outer and inner photoreceptors. Furthermore, blocking interneurons postsynaptic to the outer photoreceptors specifically impaired color but not intensity discrimination.
Our findings show that receptors with a complex and broad spectral sensitivity can contribute to color vision and reveal that chromatic and achromatic circuits in the fly share common photoreceptors.
通常认为色觉依赖于调谐至窄光谱范围的光感受器。在果蝇的小眼内,四种所谓的内部光感受器表达不同的窄带视蛋白。相比之下,外部光感受器具有宽带光谱敏感性,并且被认为专门介导无色视觉。
通过计算模型和行为实验,我们证明宽带外部光感受器对果蝇的色觉有贡献。包含外部光感受器视蛋白的对立加工模型与波长辨别数据拟合度最佳。为了通过实验揭示单个光感受器类型的贡献,我们在一个失明突变体中恢复了靶向光感受器组合的光转导。仅有宽带光感受器和一种额外光感受器类型的二色性果蝇能够辨别不同颜色,这表明外部和内部光感受器存在特定的输出比较。此外,阻断外部光感受器突触后中间神经元会特异性损害颜色辨别,但不影响亮度辨别。
我们的研究结果表明,具有复杂且宽带光谱敏感性的感受器可对色觉有贡献,并揭示果蝇中的色觉和无色觉回路共享共同的光感受器。