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Genetic and phenotypic variation in a colourful treefrog across five geographic barriers

机译:跨越五个地理障碍的彩色树蛙的遗传和表型变异

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Aim Understanding the patterns and processes underlying phenotype in a polytypic species provides key insights into microevolutionary mechanisms of diversification. The red-eyed treefrog, Agalychnis callidryas, exhibits strong regional differentiation in colour pattern, corresponding to five admixed mitochondrial DNA clades. We evaluated spatial diversity patterns across multiple, putative barriers to examine the fine-scale processes that mediate phenotypic divergence between some regions while maintaining homogeneity between others.Location We examined patterns of phenotypic diversification among 17 sites that span five putative biogeographic barriers in lower Central America (Costa Rica and Panama).Methods We tested the extent to which genetic distance (F-ST) derived from six multilocus nuclear genotypes covaried with measures of phenotypic distance (leg coloration) within and between biogeographic regions. We used linear regression analyses to determine the role of geographic and genetic factors in structuring spatial patterns of phenotypic diversity.Results The factors that best explained patterns of phenotypic diversity varied among biogeographic regions. We identified one geographic barrier that impeded gene exchange and resulted in concordant phenotypic divergence across the Continental Divide, isolating Caribbean and Pacific populations. Across Caribbean Costa Rican populations, one barrier structured phenotypic but not genetic diversity patterns, indicating a role for selection. In other regions, the putative barriers had no determining effect on either genetic or leg colour structure.Main conclusions The processes mediating the distribution and diversification of colour pattern in this polytypic, wide-ranging treefrog varied among biogeographic regions. Spatially varying selection combined with the isolating effects of geographic factors probably resulted in the patchy distribution of colour diversity across Costa Rican and Panamanian populations.
机译:目的了解多型物种中潜在表型的模式和过程,为深入了解多样化的微进化机制提供了重要见识。红眼树蛙Agalychnis callidryas在颜色图案上表现出强烈的区域差异,对应于五个混合的线粒体DNA进化枝。我们评估了多个假定障碍之间的空间多样性格局,以研究介导某些区域之间表型差异同时又保持其他区域之间同质性的精细过程。位置我们研究了横跨中美洲中下游五个假定生物地理障碍的17个位点之间的表型多样性格局。 (哥斯达黎加和巴拿马)方法我们测试了六种多位点核基因型的遗传距离(F-ST)与生物地理区域内和之间的表型距离(腿色)的测量值之间的相关性。我们使用线性回归分析来确定地理和遗传因素在构造表型多样性的空间格局中的作用。结果在生物地理区域之间,最能解释表型多样性格局的因素各不相同。我们确定了一个地理障碍,该障碍阻碍了基因交换,并导致整个大陆鸿沟出现了一致的表型差异,从而隔离了加勒比和太平洋地区的人口。在整个加勒比哥斯达黎加人口中,一个障碍构成了表型,但没有遗传多样性模式,表明了选择的作用。在其他地区,推定的障碍对遗传或腿部的颜色结构没有决定性影响。主要结论介导这种多型,宽范围树蛙的颜色模式分布和多样化的过程在生物地理区域之间有所不同。空间变化的选择与地理因素的隔离效应相结合,可能导致哥斯达黎加和巴拿马人口的颜色多样性出现零散分布。

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