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首页> 外文期刊>Ecology and Evolution >Range dynamics, rather than convergent selection, explain the mosaic distribution ofred‐winged blackbird phenotypes
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Range dynamics, rather than convergent selection, explain the mosaic distribution ofred‐winged blackbird phenotypes

机译:范围动力学而不是收敛选择解释了红翼黑鸟表型的镶嵌分布

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AbstractGeographic distributions of genetic and phenotypic characters can illuminate historical evolutionary processes. In particular, mosaic distributions of phenotypically similar populations can arise from parallel evolution or from irregular patterns of dispersal and colonization by divergent forms. Two phenotypically divergent forms of the red-winged blackbird (Agelaius phoeniceus) show a mosaic phenotypic distribution, with a “bicolored” form occurring disjunctly in California and Mexico. We analyzed the relationships among these bicolored populations and neighboring typical populations, using ~600 bp of mitochondrial DNA sequence data and 10 nuclear short tandem repeat loci. We find that bicolored populations, although separated by ~3000 km, are genetically more similar to one other than they are to typical populations separated by ~400 km. We also find evidence of ongoing gene flow among populations, including some evidence of asymmetric gene flow. We conclude that the current distribution of bicolored forms represents incomplete speciation, where recent asymmetric hybridization with typical A. phoeniceus is dividing the range of a formerly widespread bicolored form. This hypothesis predicts that bicolored forms may suffer extinction by hybridization. Future work will use fine-scaled geographical sampling and nuclear sequence data to test for hybrid origins of currently typical populations and to more precisely quantify the directionality of gene flow.
机译:摘要遗传和表型特征的地理分布可以阐明历史进化过程。特别是,表型相似的种群的镶嵌分布可能来自平行进化,也可能来自散布形式的不规则分布和定居模式。红翼黑鸟(Agelaius phoeniceus)的两种表型趋异形式表现出镶嵌表型分布,而“双色”形式则在加利福尼亚和墨西哥出现。我们使用〜600 bp的线粒体DNA序列数据和10个核短串联重复基因座分析了这些双色种群与邻近典型种群之间的关系。我们发现,双色种群虽然相距约3000 km,但在遗传学上彼此之间的相似性要比与相隔400 km的典型人群更为相似。我们还发现了种群之间正在进行的基因流动的证据,包括一些不对称基因流动的证据。我们得出的结论是,双色形式的当前分布代表不完整的物种,其中最近与典型的A.phoeniceus的不对称杂交正在划分以前广泛存在的双色形式的范围。该假设预测,双色形式可能会因杂交而灭绝。未来的工作将使用精细的地理采样和核序列数据来测试当前典型人群的杂种起源,并更精确地量化基因流的方向性。

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