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Red fluorescence of the triplefin Tripterygion delaisi is increasingly visible against background light with increasing depth

机译:在越来越深入的背景灯越来越明显,Triprfin Tripterygion Delaisi的红色荧光越来越明显

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The light environment in water bodies changes with depth due to the absorption of short and long wavelengths. Below 10?m depth, red wavelengths are almost completely absent rendering any red-reflecting animal dark and achromatic. However, fluorescence may produce red coloration even when red light is not available for reflection. A large number of marine taxa including over 270 fish species are known to produce red fluorescence, yet it is unclear under which natural light environment fluorescence contributes perceptively to their colours. To address this question we: (i) characterized the visual system of Tripterygion delaisi, which possesses fluorescent irides, (ii) separated the colour of the irides into its reflectance and fluorescence components and (iii) combined these data with field measurements of the ambient light environment to calculate depth-dependent perceptual chromatic and achromatic contrasts using visual modelling. We found that triplefins have cones with at least three different spectral sensitivities, including differences between the two members of the double cones, giving them the potential for trichromatic colour vision. We also show that fluorescence contributes increasingly to the radiance of the irides with increasing depth. Our results support the potential functionality of red fluorescence, including communicative roles such as species and sex identity, and non-communicative roles such as camouflage.
机译:由于空气和长波长的吸收,水体中的光环境随深度而变化。低于10?M深度,红色波长几乎完全缺席,呈现任何红色反射动物的黑暗和消色差。然而,即使在红光不可能反射时,荧光也可能产生红色。已知包括270多种鱼类的大量海洋分类群产生红色荧光,但目前尚不清楚的是,自然光环境荧光导致其颜色有助于贡献。为了解决这个问题,我们:(i)表征史蒂加德莱西的视觉系统,其具有荧光蛋白质,(ii)将虹膜的颜色分成其反射率和荧光成分,(iii)将这些数据与环境测量结合在一起光环境计算使用可视建模的深度依赖性感知的彩色和消色差对比。我们发现,Triplefins具有至少三种不同的光谱敏感性的锥体,包括双锥的两个成员之间的差异,给出了三色彩色视觉的可能性。我们还表明,荧光越来越多地贡献了IRIDE的辐射随着深度的增加。我们的结果支持红色荧光的潜在功能,包括诸如物种和性别的沟通作用,以及伪装等非交流角色。

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