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维多利亚湖慈鲷群体中视蛋白和色原对锥体色素变异的贡献。

Contribution of opsins and chromophores to cone pigment variation across populations of Lake Victoria cichlids.

机构信息

Groningen Institute for Evolutionary Life Sciences (GELIFES), Groningen, The Netherlands.

出版信息

J Fish Biol. 2022 Aug;101(2):365-377. doi: 10.1111/jfb.14969. Epub 2021 Dec 29.

Abstract

Adaptation to heterogeneous sensory environments has been implicated as a key parameter in speciation. Cichlid fish are a textbook example of divergent visual adaptation, mediated by variation in the sequences and expression levels of cone opsin genes (encoding the protein component of visual pigments). In some vertebrates including fish, visual sensitivity is also tuned by the ratio of vitamin A /A -derived chromophores (i.e., the light-sensitive component of the visual pigment bound to the opsin protein), where higher proportions of A cause a more red-shifted wavelength absorbance. This study explores the variation in chromophore ratios across multiple cichlid populations in Lake Victoria, using as a proxy the expression of the gene Cyp27c1, which has been shown to regulate the conversion of vitamin A into vitamin A in several vertebrates. This study focuses on sympatric Pundamilia cichlids, where species with blue or red male coloration co-occur at multiple islands but occupy different depths and consequently different visual habitats. In the red species, we found higher cyp27c1 expression in populations from turbid waters than from clear waters, but there was no such pattern in the blue species. Across populations, differences between the sympatric species in cyp27c1 expression had a consistent relationship with species differences in opsin expression patterns, but the red/blue identity reversed between clear and turbid waters. To assess the contribution of heritable vs. environmental causes of variation, we tested whether light manipulations induce a change in cyp27c1 expression in the laboratory. We found that cyp27c1 expression was not influenced by experimental light conditions, suggesting that the observed variation in the wild is due to genetic differences. Nonetheless, compared to other cichlid species, cyp27c1 is expressed at very low levels in Pundamilia, suggesting that it may not be relevant for visual adaptation in this species. Conclusively, establishing the biological importance of this variation requires testing of actual A /A ratios in the eye, as well as its consequences for visual performance.

摘要

适应异质的感觉环境被认为是物种形成的一个关键参数。慈鲷鱼是视觉适应趋异的典型例子,这是由视蛋白基因(编码视觉色素的蛋白质成分)序列和表达水平的变化介导的。在包括鱼类在内的一些脊椎动物中,视觉灵敏度也通过维生素 A/A 衍生生色团(即与视蛋白结合的视觉色素的光敏成分)的比例来调节,其中较高比例的 A 会导致更红移的波长吸收。本研究使用 Cyp27c1 基因的表达作为替代物,探索了维多利亚湖多个慈鲷种群中生色团比例的变化,该基因已被证明在几种脊椎动物中调节维生素 A 向维生素 A 的转化。本研究重点关注同域共生的 Pundamilia 慈鲷,其中具有蓝色或红色雄性颜色的物种在多个岛屿上共同出现,但占据不同的深度,因此处于不同的视觉栖息地。在红色物种中,我们发现来自混浊水域的种群中 Cyp27c1 的表达高于来自清澈水域的种群,但在蓝色物种中没有这种模式。在整个种群中,同域物种之间 Cyp27c1 表达的差异与视蛋白表达模式的物种差异具有一致的关系,但在清澈和混浊水域之间,红/蓝身份发生了逆转。为了评估遗传和环境因素对变异的贡献,我们测试了实验室中的光照处理是否会诱导 Cyp27c1 表达的变化。我们发现 Cyp27c1 的表达不受实验光照条件的影响,这表明在野外观察到的变异是由于遗传差异造成的。尽管如此,与其他慈鲷物种相比,Cyp27c1 在 Pundamilia 中的表达水平非常低,这表明它可能与该物种的视觉适应无关。总之,要确定这种变异的生物学重要性,需要测试眼睛中实际的 A/A 比值及其对视觉性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7ec/9543281/fe3f1e8596a2/JFB-101-365-g001.jpg

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