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Visual modelling suggests a weak relationship between the evolution of ultraviolet vision and plumage coloration in birds

机译:视觉建模表明,紫外线视觉的发展与鸟类羽毛着色之间的关系很弱

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Birds have sophisticated colour vision mediated by four cone types that cover a wide visual spectrum including ultraviolet (UV) wavelengths. Many birds have modest UV sensitivity provided by violet-sensitive (VS) cones with sensitivity maxima between 400 and 425nm. However, some birds have evolved higher UV sensitivity and a larger visual spectrum given by UV-sensitive (UVS) cones maximally sensitive at 360-370nm. The reasons for VS-UVS transitions and their relationship to visual ecology remain unclear. It has been hypothesized that the evolution of UVS-cone vision is linked to plumage colours so that visual sensitivity and feather coloration are matched'. This leads to the specific prediction that UVS-cone vision enhances the discrimination of plumage colours of UVS birds while such an advantage is absent or less pronounced for VS-bird coloration. We test this hypothesis using knowledge of the complex distribution of UVS cones among birds combined with mathematical modelling of colour discrimination during different viewing conditions. We find no support for the hypothesis, which, combined with previous studies, suggests only a weak relationship between UVS-cone vision and plumage colour evolution. Instead, we suggest that UVS-cone vision generally favours colour discrimination, which creates a nonspecific selection pressure for the evolution of UVS cones.
机译:鸟类具有由四种视锥细胞类型介导的复杂的色彩视觉,这些视锥细胞类型涵盖了包括紫外线(UV)波长在内的广泛视觉光谱。许多鸟类具有紫罗兰色(VS)视锥细胞提供的适度的UV敏感性,其最大值在400至425nm之间。但是,某些鸟类已经进化出更高的紫外线敏感度和更大的可见光谱,这是由在360-370nm处最大敏感度的紫外线敏感(UVS)视锥细胞提供的。 VS-UVS过渡的原因及其与视觉生态的关系仍不清楚。据推测,UVS锥视力的发展与羽毛的颜色有关,因此视觉敏感性和羽毛的颜色是匹配的。这导致了一个特定的预测,即UVS视锥视觉可增强对UVS禽类羽毛颜色的辨别力,而VS禽类着色则不存在或不太明显。我们使用有关鸟类之间UVS视锥的复杂分布的知识以及在不同观察条件下颜色辨别的数学模型的结合来检验该假设。我们发现没有支持这一假设的假设,该假设与先前的研究相结合,表明UVS圆锥视觉与羽毛颜色演变之间的关系很弱。取而代之的是,我们建议UVS圆锥视觉通常会偏爱颜色区分,这会为UVS视锥的演变造成非特定的选择压力。

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