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Shedding Light on Serpent Sight: The Visual Pigments of Henophidian Snakes

机译:蛇的视线上的光芒:Henophidian蛇的视觉色素

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摘要

The biologist Gordon Walls proposed his “transmutation” theory through the 1930s and the 1940s to explain cone-like morphology of rods (and vice versa) in the duplex retinas of modern-day reptiles, with snakes regarded as the epitome of his hypothesis. Despite Walls' interest, the visual system of reptiles, and in particular snakes, has been widely neglected in favor of studies of fishes and mammals. By analyzing the visual pigments of two henophidian snakes, Xenopeltis unicolor and Python regius, we show that both species express two cone opsins, an ultraviolet-sensitive short-wavelength-sensitive 1 (SWS1) (λmax = 361 nm) pigment and a long-wavelength-sensitive (LWS) (λmax = 550 nm) pigment, providing the potential for dichromatic color vision. They also possess rod photoreceptors which express the usual rod opsin (Rh1) pigment with a λmax at 497 nm. This is the first molecular study of the visual pigments expressed in the photoreceptors of any snake species. The presence of a duplex retina and the characterization of LWS, SWS1, and Rh1 visual pigments in henophidian snakes implies that “lower” snakes do not provide support for Walls' transmutation theory, unlike some “higher” (caenophidian) snakes and other reptiles, such as geckos. More data from other snake lineages will be required to test this hypothesis further.
机译:生物学家戈登·沃尔斯(Gordon Walls)提出了他在1930年代和1940年代的“”变”理论,以解释现代爬行动物的双面视网膜中杆状的视锥状形态(反之亦然),其中蛇被视为其假说的缩影。尽管有Walls的兴趣,但爬行动物,尤其是蛇的视觉系统已被广泛忽视,而倾向于研究鱼类和哺乳动物。通过分析两条三栖蛇蛇(Xenopeltis unicolor和Python regius)的视觉色素,我们发现这两种物种都表达两种视锥蛋白,即紫外线敏感的短波敏感1(SWS1)(λmax= 361 nm)色素和长的波长敏感(LWS)(λmax= 550 nm)颜料,提供了双色彩色视觉的潜力。它们还具有棒状感光体,可表达通常的棒状视蛋白(Rh1)颜料,其λmax在497 nm处。这是对任何蛇类光感受器表达的视觉色素的首次分子研究。两栖动物蛇中存在双体视网膜以及LWS,SWS1和Rh1视觉色素的特征表明,“低位”蛇不为Walls的trans变理论提供支持,这与某些“高位”(食蚁兽)蛇和其他爬行动物不同,例如壁虎。为了进一步检验该假设,将需要其他蛇血统的更多数据。

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