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Simultaneous Expression of UV and Violet SWS1 Opsins Expands the Visual Palette in a Group of Freshwater Snakes

机译:UV 和紫色 SWS1 视蛋白的同时表达扩展了一组淡水蛇的视觉调色板

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摘要

Snakes are known to express a rod visual opsin and two cone opsins, only (SWS1, LWS), a reduced palette resulting from their supposedly fossorial origins. Dipsadid snakes in the genus Helicops are highly visual predators that successfully invaded freshwater habitats from ancestral terrestrial-only habitats. Here, we report the first case of multiple SWS1 visual pigments in a vertebrate, simultaneously expressed in different photoreceptors and conferring both UV and violet sensitivity to Helicops snakes. Molecular analysis and in vitro expression confirmed the presence of two functional SWS1 opsins, likely the result of recent gene duplication. Evolutionary analyses indicate that each sws1 variant has undergone different evolutionary paths with strong purifying selection acting on the UV-sensitive copy and dN/dS ∼1 on the violet-sensitive copy. Site-directed mutagenesis points to the functional role of a single amino acid substitution, Phe86Val, in the large spectral shift between UV and violet opsins. In addition, higher densities of photoreceptors and SWS1 cones in the ventral retina suggest improved acuity in the upper visual field possibly correlated with visually guided behaviors. The expanded visual opsin repertoire and specialized retinal architecture are likely to improve photon uptake in underwater and terrestrial environments, and provide the neural substrate for a gain in chromatic discrimination, potentially conferring unique color vision in the UV–violet range. Our findings highlight the innovative solutions undertaken by a highly specialized lineage to tackle the challenges imposed by the invasion of novel photic environments and the extraordinary diversity of evolutionary trajectories taken by visual opsin-based perception in vertebrates.
机译:已知蛇只表达一个视杆状视蛋白和两个视锥视蛋白 (SWS1, LWS),这是由于它们被认为是化石起源而缩小的调色板。Helicops 属的 Dipsadid 蛇是高度视觉化的捕食者,它们成功地从祖先的陆地栖息地入侵了淡水栖息地。在这里,我们报告了脊椎动物中多种 SWS1 视觉色素的第一例,它们同时在不同的光感受器中表达,并赋予对 Helicops 蛇的紫外线和紫色敏感性。分子分析和体外表达证实存在两种功能性 SWS1 视蛋白,这可能是近期基因复制的结果。进化分析表明,每个 sws1 变体都经历了不同的进化路径,其中强纯化选择作用于 UV 敏感拷贝,dN/dS ∼1 作用于紫色敏感拷贝。定点诱变指向单个氨基酸取代 Phe86Val 在 UV 和紫色视蛋白之间的大光谱变化中的功能作用。此外,腹侧视网膜中光感受器和 SWS1 视锥细胞的密度较高表明上视野敏锐度的提高可能与视觉引导行为有关。扩展的视觉视蛋白库和专门的视网膜结构可能会改善水下和陆地环境中的光子摄取,并为提高色度辨别能力提供神经基质,从而可能在紫外-紫范围内赋予独特的色觉。我们的研究结果突出了高度专业化的谱系为应对新型光环境入侵所带来的挑战以及脊椎动物中基于视觉 opsin 的感知所采取的非凡进化轨迹的多样性所带来的挑战。

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