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首页> 外文期刊>Biological Journal of the Linnean Society >Cryptic genetic diversity and cytonuclear discordance characterize contact among Canada jay (Perisoreus canadensis) morphotypes in western North America
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Cryptic genetic diversity and cytonuclear discordance characterize contact among Canada jay (Perisoreus canadensis) morphotypes in western North America

机译:隐秘的遗传多样性和人性核不一致表征在西北西部的加拿大杰伊(Perisoreus Canadensis)Morothepes之间的联系表征联系

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摘要

Three distinct Canada jay (Perisoreus canadensis) morphotypes with easily recognizable plumage traits come into contact in western North America. Recent work demonstrated high genetic structure across the species' range; however, patterns of genetic variation in these contact zones remain unknown. We categorized 605 individuals into one of three morphotypes (Pacific, Rocky Mountain, and Boreal) based on plumage, and genotyped individuals at the mtDNA control region and 12 microsatellite loci to assess the extent of hybridization between morphotypes. Our data showed cryptic genetic diversity and high cytonuclear discordance among morphotypes within contact zones, which is likely the result of recent and historical admixture. The distributions of the Boreal and Pacific morphotypes each showed a strong association with a single, distinct genetic group, whereas the Rocky Mountain morphotype exhibited higher genetic diversity and was associated with multiple genotypes. Our analyses show the importance of considering both plumage and genetic traits when examining contact zones between closely related taxa. Finally the data presented in this study reaffirm that the Pacific morphotype is distinct from the Boreal and Rocky Mountain morphotypes based on genetic, phenotypic and ecological data, indicating that the Pacific morphotype should be re-elevated to a full species.
机译:三种不同的加拿大松鸦(Perisoreus canadensis)形态类型与易于识别的羽毛特征在北美西部接触。最近的研究表明,该物种的遗传结构很高;然而,这些接触带的遗传变异模式仍然未知。我们根据羽毛将605个个体分为三种形态类型(太平洋型、落基山型和北方型),并在线粒体DNA控制区和12个微卫星位点对个体进行基因分型,以评估形态类型之间的杂交程度。我们的数据显示,接触区内形态类型之间存在隐性遗传多样性和高度的细胞核不一致性,这可能是近期和历史混合的结果。北部和太平洋形态类型的分布均显示出与单一、独特的遗传群的强烈关联,而落基山形态类型显示出更高的遗传多样性,并与多个基因型相关。我们的分析表明,在检查密切相关分类群之间的接触带时,考虑羽毛和遗传特征的重要性。最后,本研究中提供的数据重申,基于遗传、表型和生态数据,太平洋形态类型不同于北方和落基山形态类型,这表明太平洋形态类型应重新提升为完整物种。

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