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Adaptive evolutionary paths from UV reception to sensing violet light by epistatic interactions

机译:通过认证互动从UV接收到感应紫光光的自适应进化路径

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Ultraviolet (UV) reception is useful for such basic behaviors as mate choice, foraging, predator avoidance, communication, and navigation, whereas violet reception improves visual resolution and subtle contrast detection. UV and violet reception are mediated by the short wavelength–sensitive (SWS1) pigments that absorb light maximally (λmax) at ~360 nm and ~395 to 440 nm, respectively. Because of strong nonadditive (epistatic) interactions among amino acid changes in the pigments, the adaptive evolutionary mechanisms of these phenotypes are not well understood. Evolution of the violet pigment of the African clawed frog (Xenopus laevis, λmax = 423 nm) from the UV pigment in the amphibian ancestor (λmax = 359 nm) can be fully explained by eight mutations in transmembrane (TM) I–III segments. We show that epistatic interactions involving the remaining TM IV–VII segments provided evolutionary potential for the frog pigment to gradually achieve its violet-light reception by tuning its color sensitivity in small steps. Mutants in these segments also impair pigments that would cause drastic spectral shifts and thus eliminate them from viable evolutionary pathways. The overall effects of epistatic interactions involving TM IV–VII segments have disappeared at the last evolutionary step and thus are not detectable by studying present-day pigments. Therefore, characterizing the genotype-phenotype relationship during each evolutionary step is the key to uncover the true nature of epistasis.
机译:紫外(UV)接收对于作为配偶选择,觅食,捕食者避免,通信和导航的基本行为可用于这种基本行为,而紫罗兰接收改善了视觉分辨率和微妙的对比度检测。紫外线和紫色接收由短波长敏感(SWS1)颜料介导,其分别在〜360nm和〜395至440nm处最大地(λ max )。由于氨基酸在颜料中的氨基酸变化中的强烈的非吸偿(外观)相互作用,这些表型的适应性进化机制并不顺利。非洲爪青蛙(Xenopus Laevis,λ Max = 423nm)的紫色颜料的演变(λ max = 359nm)可以在跨膜(TM)I-III段中的八个突变完全解释。我们表明,涉及剩余的TM IV-VII段的认证相互作用为青蛙颜料提供了进化潜力,通过在较小步骤中调整其颜色敏感性来逐渐达到其紫光接收。这些段中的突变体也损害颜料会导致剧烈谱变化,从而消除它们从可行的进化途径中消除它们。涉及TM IV-VII段的背景相互作用的整体效果在最后的进化步骤中已经消失,因此通过研究当前颜料来说是不可检测的。因此,表征在每个进化步骤期间的基因型 - 表型关系是揭示超越性质的关键。

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