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Signal Divergence is Correlated with Genetic Distance and not Environmental Differences in Darters (Percidae: Etheostoma)

机译:信号发散与飞镖的遗传距离相关,与环境差异无关(Percidae:Etheostoma)

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Speciation research focuses on the evolutionary mechanisms responsible for the origin of species, and recent treatments have distinguished ecological and mutation-order speciation as distinct evolutionary processes. Using a research framework that considers ‘speciation phenotypes’ (sensu Shaw and Mullen in Genet 139(5):649–661, 2011) and a modified hierarchy of speciation models, we address whether speciation in benthic fishes commonly called darters proceeds under divergent ecological selection or a mutation-order process. We examined neutral genetic divergence, sexual signal (male color) divergence, environmental differences, and geographic distance in 66 species pair comparisons. Modified Mantel tests detected significant relationships between genetic distance and overall male color differences, as well as geographic distance and overall male color differences; however, after accounting for the correlation of male color and geographic distance with genetic distance using a partial Mantel test, no relationship was observed between male color and geographic distance. Neither microhabitat nor climatic measures of environmental differences correlated with overall male color differences. Color difference scores for discrete color categories (i.e., red/orange/yellow, black, and blue/green) differed in their correlations with explanatory variables, implying different selection regimes may be influencing each component of darter color patterns. Our results do not support a primary role for divergent ecological selection shaping early divergence of darter sexual signals. Instead, a model of mutation-order speciation may best explain the clock-like manner of changes in male color among darter species.
机译:物种研究集中在负责物种起源的进化机制上,最近的研究将生态和突变顺序物种区分为不同的进化过程。使用考虑“物种表型”的研究框架(Sensu Shaw and Mullen in Genet 139(5):649–661,2011)和改良的物种模型层次结构,我们研究了通常被称为飞镖的底栖鱼类的物种形成是否在不同的生态环境下进行选择或突变顺序过程。我们在66个物种对比较中检查了中性遗传差异,性信号(男性颜色)差异,环境差异和地理距离。改良的Mantel测试检测到遗传距离与男性总体色差之间以及地理距离与男性总体色差之间存在显着关系。但是,使用部分Mantel检验考虑了男性颜色和地理距离与遗传距离的相关性之后,未发现男性颜色和地理距离之间的关系。无论是微生境还是环境差异的气候测量都与男性总体肤色差异无关。离散颜色类别(即,红色/橙色/黄色,黑色和蓝色/绿色)的色差评分与解释变量的相关性不同,这意味着不同的选择方式可能会影响较暗的颜色模式的每个组成部分。我们的结果不支持发散性生态信号在早期形成性欲信号发散方面的主要作用。取而代之的是,突变顺序物种形成模型可以最好地解释飞镖物种中雄性颜色的钟状变化方式。

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