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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Photoreceptor spectral sensitivities in terrestrial animals: adaptations for luminance and colour vision
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Photoreceptor spectral sensitivities in terrestrial animals: adaptations for luminance and colour vision

机译:陆生动物的感光光谱敏感度:适应亮度和色觉

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This review outlines how eyes of terrestrial vertebrates and insects meet the competing requirements of coding both spatial and spectral information. There is no unique solution to this problem. Thus, mammals and honeybees use their long-wavelength receptors for both achromatic (luminance) and colour vision, whereas flies and birds probably use separate sets of photoreceptors for the two purposes. In particular, we look at spectral tuning and diversification among 'long-wavelength' receptors (sensitivity maxima at greater than 500 nm), which play a primary role in luminance vision. Data on spectral sensitivities and phylogeny of visual photopigments can be incorporated into theoretical models to suggest how eyes are adapted to coding natural stimuli. Models indicate, for example, that animal colour vision-involving five or fewer broadly tuned receptors-is well matched to most natural spectra. We can also predict that the particular objects of interest and signal-to-noise ratios will affect the optimal eye design. Nonetheless, it remains difficult to account for the adaptive significance of features such as co-expression of photopigments in single receptors, variation in spectral sensitivities of mammalian L-cone pigments and the diversification of long-wavelength receptors that has occurred in several terrestrial lineages.
机译:本文概述了陆生脊椎动物和昆虫的眼睛如何满足对空间和光谱信息进行编码的竞争要求。此问题没有唯一的解决方案。因此,哺乳动物和蜜蜂在消色差(亮度)和彩色视觉方面都使用它们的长波长接收器,而苍蝇和鸟类可能为这两个目的使用单独的感光器组。特别是,我们着眼于“长波长”受体(大于500 nm的灵敏度最大值)之间的光谱调谐和多样化,这些受体在亮度视觉中起主要作用。有关视觉色素的光谱敏感性和系统发育的数据可以纳入理论模型,以建议如何使眼睛适应编码自然刺激。模型表明,例如,涉及五个或更少的广泛调谐受体的动物色觉与大多数自然光谱完全匹配。我们还可以预测感兴趣的特定对象和信噪比将影响最佳的眼睛设计。尽管如此,仍然难以解释这些特征的适应性意义,例如在单个受体中共表达光色素,哺乳动物L-圆锥体色素的光谱敏感性变化以及在几种陆地谱系中发生的长波长受体的多样化。

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