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小眼鱼Opsin 进化:调谐部位的趋同进化、反转和并行进化。

Opsin evolution in damselfish: convergence, reversal, and parallel evolution across tuning sites.

机构信息

Department of Biology, University of Maryland, College Park, MD, USA.

出版信息

J Mol Evol. 2012 Oct;75(3-4):79-91. doi: 10.1007/s00239-012-9525-0. Epub 2012 Oct 19.

Abstract

The visual system plays a role in nearly every aspect of an organism's life history, and there is a direct link between visual pigment phenotypes and opsin genotypes. In previous studies of African cichlid fishes, we found evidence for positive selection among some opsins, with sequence variation greatest for opsins producing the shortest and longest wavelength visual pigments. In this study, we examined opsin evolution in the closely related damselfish family (Pomacentridae), a group of reef fishes that are distributed widely and have a documented fossil record of at least 50 million years (MY). We found increased functional variation in the protein sequences of opsins at the short- and long-wavelength ends of the visual spectrum, in agreement with the African cichlids, despite an order of magnitude difference in the ages of the two radiations. We also reconstructed amino acid substitutions across opsin tuning sites. These reconstructions indicated multiple instances of parallel evolution, at least one definitive case of convergent evolution, and one evolutionary reversal. Our findings show that the amino acids at spectral tuning sites are labile evolutionarily, and that the same codons evolve repeatedly. These findings emphasize that the aquatic light environment can shape opsin sequence evolution. They further show that phylogenetic approaches can provide important insights into the mechanisms by which natural selection "tinkers" with phenotypes.

摘要

视觉系统在生物体的生活史的几乎每一个方面都起着作用,并且视觉色素表型和视蛋白基因型之间存在直接联系。在以前对非洲丽鱼科鱼类的研究中,我们发现了一些视蛋白中存在正选择的证据,产生最短和最长波长视觉色素的视蛋白的序列变异最大。在这项研究中,我们研究了密切相关的雀鲷科(Pomacentridae)鱼类中的视蛋白进化,这是一组分布广泛的珊瑚鱼,其化石记录至少有 5000 万年(MY)。我们发现,在视觉光谱的短波长和长波长端的视蛋白蛋白序列中,功能变异增加,这与非洲丽鱼科鱼类一致,尽管这两个辐射的年龄相差一个数量级。我们还重建了视蛋白调谐位点的氨基酸取代。这些重建表明了平行进化的多个实例,至少有一个明确的趋同进化的案例,以及一个进化逆转。我们的研究结果表明,光谱调谐位点的氨基酸在进化上是不稳定的,并且相同的密码子会反复进化。这些发现强调了水生光环境可以塑造视蛋白序列的进化。它们进一步表明,系统发育方法可以为自然选择“修补”表型的机制提供重要的见解。

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