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首页> 外文期刊>Molecular phylogenetics and evolution >Cryptic speciation and gene flow in a migratory songbird Species Complex: Insights from the Red-Eyed Vireo (Vireo olivaceus)
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Cryptic speciation and gene flow in a migratory songbird Species Complex: Insights from the Red-Eyed Vireo (Vireo olivaceus)

机译:迁移鸣禽物种复合物中的神秘形态和基因流动:红眼睛的Vireo(Vireo Olivaceus)的见解

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摘要

Migratory species that alternate between sympatry and allopatry over the course of an annual cycle are promising subjects for studies seeking to understand the process of speciation in the absence of strict geographic isolation. Here we sought to identify cryptic species and assess rates of gene flow in a Glade of neotropical migrant songbirds in which geography and taxonomy are currently out of sync: the Red Eyed Vireo (V. olivaceus) Species Complex. Phylogenetic, clustering, and statistical species delimitation analyses found that V. olivaceus includes two non-sister lineages migrating in opposite directions across the equator. Analyses of gene flow identified low levels of introgression between two species pairs, but none between northern and southern olivaceus. We also identified substantial well-supported conflicts between nuclear and mitochondrial topologies. Although the geographic distribution of mito-nuclear discordance is suggestive of hybridization and mitochondrial capture, we found no evidence of introgression in the nuclear genome of populations with discordant mitochondrial gene trees. Our study finds that species boundaries match breeding range and migratory phenology rather than the existing taxonomy in this group, and demonstrates the utility of genomic data in inferring species boundaries in recently diverged clades. (C) 2017 Elsevier Inc. All rights reserved.
机译:在年度周期中的Sympatry和Allopatry之间交替的迁徙物种是寻求理解在没有严格的地理隔离的情况下了解物业过程的研究。在这里,我们寻求识别神秘的物种,并评估一个沼泽地歌曲的基因流量,其中地理和分类目前不同步:红色眼睛的vireo(olivaceus)物种复合物。发现系统发育,聚类和统计物种划分分析发现,V. Olivaceus包括两个非姐妹谱系,在赤道上沿相反方向迁移。基因流的分析确定了两个物种对之间的低水平迟发,但北部和南部奥肝之间没有。我们还确定了核和线粒体拓扑之间的大量良好支持的冲突。虽然Mito核心不间断的地理分布是暗示杂交和线粒体捕获的旨在,但我们发现没有具有不安的线粒体基因树木的群体核基因组中迟发的证据。我们的研究发现,物种边界匹配繁殖范围和迁徙候选,而不是本组现有的分类物,并证明了基因组数据在最近分叉的曲线中推断物种边界中的效用。 (c)2017年Elsevier Inc.保留所有权利。

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