首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Shifting mirrors: adaptive changes in retinal reflections to winter darkness in Arctic reindeer
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Shifting mirrors: adaptive changes in retinal reflections to winter darkness in Arctic reindeer

机译:移动镜:北极驯鹿的视网膜反射适应性变化以适应冬季的黑暗

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摘要

Arctic reindeer experience extreme changes in environmental light from continuous summer daylight to continuous winter darkness. Here, we show that they may have a unique mechanism to cope with winter darkness by changing the wavelength reflection from their tapetum lucidum (TL). In summer, it is golden with most light reflected back directly through the retina, whereas in winter it is deep blue with less light reflected out of the eye. The blue reflection in winter is associated with significantly increased retinal sensitivity compared with summer animals. The wavelength of reflection depends on TL collagen spacing, with reduced spacing resulting in shorter wavelengths, which we confirmed in summer and winter animals. Winter animals have significantly increased intra-ocular pressure, probably produced by permanent pupil dilation blocking ocular drainage. This may explain the collagen compression. The resulting shift to a blue reflection may scatter light through photoreceptors rather than directly reflecting it, resulting in elevated retinal sensitivity via increased photon capture. This is, to our knowledge, the first description of a retinal structural adaptation to seasonal changes in environmental light. Increased sensitivity occurs at the cost of reduced acuity, but may be an important adaptation in reindeer to detect moving predators in the dark Arctic winter.
机译:北极驯鹿会经历从夏季持续白天到冬季持续黑暗的环境光的极端变化。在这里,我们展示了它们可能具有独特的机制,可以通过改变来自透明绒被(TL)的波长反射来应对冬天的黑暗。在夏季,它是金色的,大部分光直接通过视网膜反射回来,而在冬季,它是深蓝色,而从眼睛反射的光较少。与夏季动物相比,冬季的蓝色反射与视网膜敏感性显着增加有关。反射的波长取决于TL胶原蛋白的间距,间距的减小导致波长的缩短,我们在夏季和冬季的动物中都证实了这一点。冬季动物的眼内压明显升高,可能是由于永久性瞳孔扩张阻塞了眼部引流而产生的。这可以解释胶原蛋白的压缩。由此产生的向蓝色反射的转变可能会使光通过感光体散射,而不是直接反射,从而通过增加光子捕获而导致视网膜灵敏度升高。据我们所知,这是对视网膜结构适应环境光的季节性变化的首次描述。灵敏度的提高是以降低敏锐度为代价的,但可能是驯鹿在黑暗的北极冬季发现移动的掠食者的重要适应措施。

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