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Ultraviolet vision in birds: the importance of transparent eye media

机译:鸟类中的紫外线视力:透明眼媒体的重要性

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摘要

Ultraviolet (UV)-sensitive visual pigments are widespread in the animal kingdom but many animals, for example primates, block UV light from reaching their retina by pigmented lenses. Birds have UV-sensitive (UVS) visual pigments with sensitivity maxima around 360–373 nm (UVS) or 402–426 nm (violet-sensitive, VS). We describe how these pigments are matched by the ocular media transmittance in 38 bird species. Birds with UVS pigments have ocular media that transmit more UV light (wavelength of 50% transmittance, λT0.5, 323 nm) than birds with VS pigments (λT0.5, 358 nm). Yet, visual models predict that colour discrimination in bright light is mostly dependent on the visual pigment (UVS or VS) and little on the ocular media. We hypothesize that the precise spectral tuning of the ocular media is mostly relevant for detecting weak UV signals, e.g. in dim hollow-nests of passerines and parrots. The correlation between eye size and UV transparency of the ocular media suggests little or no lens pigmentation. Therefore, only small birds gain the full advantage from shifting pigment sensitivity from VS to UVS. On the other hand, some birds with VS pigments have unexpectedly low UV transmission of the ocular media, probably because of UV blocking lens pigmentation.
机译:紫外线(UV)敏感的视觉颜料在动物界广泛存在,但是许多动物(例如灵长类动物)会通过有色晶状体阻止UV光到达其视网膜。鸟类具有对紫外线敏感(UVS)的视觉色素,其最大感光度约为360–373 nm(UVS)或402–426 nm(紫外线敏感,VS)。我们描述了这些色素如何与38种鸟类的眼介质透射率匹配。含UVS颜料的鸟类的眼介质比含VS颜料的鸟类(λT0.5、358 nm)透射更多的紫外线(波长为50%的透射率,λT0.5,323 nm)。然而,视觉模型预测,明亮光线下的颜色辨别主要取决于视觉颜料(UVS或VS),而很少依赖于眼部介质。我们假设眼介质的精确光谱调谐与检测弱紫外线信号(例如紫外线)最相关。在昏暗的雀形鹦鹉和鹦鹉巢中。眼睛大小和眼介质的紫外线透明度之间的相关性表明,很少或没有晶状体色素沉着。因此,只有小鸟才能从将颜料敏感性从VS转变为UVS获得全部优势。另一方面,某些带有VS色素的鸟类的眼睛介质的紫外线透射率出乎意料的低,这可能是因为紫外线会阻止晶状体色素沉着。

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