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Divergent selection for opsin gene variation in guppy (Poecilia reticulata) populations of Trinidad and Tobago

机译:特立尼达和多巴哥孔雀鱼(Poecilia reticulata)种群视蛋白基因变异的分歧选择

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摘要

The guppy is known to exhibit remarkable interindividual variations in spectral sensitivity of middle to long wavelength-sensitive (M/LWS) cone photoreceptor cells. The guppy has four M/LWS-type opsin genes (LWS-1, LWS-2, LWS-3 and LWS-4) that are considered to be responsible for this sensory variation. However, the allelic variation of the opsin genes, particularly in terms of their absorption spectrum, has not been explored in wild populations. Thus, we examined nucleotide variations in the four M/LWS opsin genes as well as blue-sensitive SWS2-B and ultraviolet-sensitive SWS1 opsin genes for comparison and seven non-opsin nuclear loci as reference genes in 10 guppy populations from various light environments in Trinidad and Tobago. For the first time, we discovered a potential spectral variation (180 Ser/Ala) in LWS-1 that differed at an amino acid site known to affect the absorption spectra of opsins. Based on a coalescent simulation of the nucleotide variation of the reference genes, we showed that the interpopulation genetic differentiation of two opsin genes was significantly larger than the neutral expectation. Furthermore, this genetic differentiation was significantly related to differences in dissolved oxygen (DO) level, and it was not explained by the spatial distance between populations. The DO levels are correlated with eutrophication that possibly affects the color of aquatic environments. These results suggest that the population diversity of opsin genes is significantly driven by natural selection and that the guppy could adapt to various light environments through color vision changes.
机译:已知孔雀鱼在中长波长敏感(M / LWS)锥型感光细胞的光谱灵敏度上表现出显着的个体差异。孔雀鱼有四个M / LWS型视蛋白基因(LWS-1,LWS-2,LWS-3和LWS-4),被认为是造成这种感觉变化的原因。然而,尚未在野生种群中探索视蛋白基因的等位基因变异,特别是就其吸收光谱而言。因此,我们检查了四种M / LWS视蛋白基因以及蓝敏感的SWS2-B和紫外线敏感的SWS1视蛋白基因中的核苷酸变异,以进行比较,并在来自不同光照环境的10个孔雀鱼种群中,将七个非视蛋白核基因座作为参考基因在特立尼达和多巴哥。我们首次发现LWS-1的潜在光谱变化(180 Ser / Ala)在一个已知会影响视蛋白吸收光谱的氨基酸位点上有所不同。基于参考基因核苷酸变异的合并模拟,我们表明两个视蛋白基因的种群间遗传分化显着大于中性预期。此外,这种遗传分化与溶解氧(DO)水平的差异显着相关,并且不能通过种群之间的空间距离来解释。溶解氧水平与可能影响水生环境颜色的富营养化有关。这些结果表明视蛋白基因的种群多样性是由自然选择显着驱动的,并且孔雀鱼可以通过色觉改变来适应各种光照环境。

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