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首页> 外文期刊>Molecular phylogenetics and evolution >Cryptic speciation in the white-shouldered antshrike (Thamnophilus aethiops, Aves - Thamnophilidae): The tale of a transcontinental radiation across rivers in lowland Amazonia and the northeastern Atlantic Forest
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Cryptic speciation in the white-shouldered antshrike (Thamnophilus aethiops, Aves - Thamnophilidae): The tale of a transcontinental radiation across rivers in lowland Amazonia and the northeastern Atlantic Forest

机译:白肩蚁(Thamnophilus aethiops,Aves-Thamnophilidae)中的隐身物种:低陆亚马逊河和东北大西洋森林中跨河辐射的故事

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The growing knowledge on paleogeography and the recent applications of molecular biology and phylogeography to the study of the Amazonian biota have provided a framework for testing competing hypotheses of biotic diversification in this region. Here, we reconstruct the spatio-temporal context of diversification of a widespread understory polytypic Amazonian bird species (Thamnophilus aethiops) and contrast it with different hypotheses of diversification and the taxonomy currently practiced in the group. Sequences of mtDNA (cytochrome b and ND2) and nuclear (beta-fibrinogen introns 5 and 7 and the Z-liked Musk4) genes, adding up to 4093 bp of 89 individuals covering the Amazonian, Andean, and Atlantic Forest populations of T. aethiops were analyzed. Phylogenetic and population genetics analyses revealed ten reciprocally monophyletic and genetically isolated or nearly-isolated lineages in T. aethiops, highlighting several inconsistencies between taxonomy and evolutionary history in this group. Our data suggest that the diversification of T. aethiops started in the Andean highlands, and then proceeded into the Amazonian lowlands probably after the consolidation of the modern Amazonian drainage. The main cladogenetic events in T. aethiops may be related to the formation and structuring of large Amazonian rivers during the Late Miocene-Early Pleistocene, coinciding with the dates proposed for other lineages of Amazonian organisms. Population genetics data do not support climatic fluctuations as a major source of diversification in T. aethiops. Even though not entirely concordant with paleobiogeographic models derived from phylogenies of other vertebrate lineages, our results support a prominent role for rivers as major drivers of diversification in Amazonia, while underscoring that different diversification scenarios are probably related to the distinct evolutionary origins of groups being compared. (C) 2014 Elsevier Inc. All rights reserved.
机译:有关古地理学的知识不断增长,以及分子生物学和系统地理学在亚马逊河生物区系研究中的最新应用,为测试该地区生物多样性的竞争假说提供了框架。在这里,我们重建了一个广泛的林下多型亚马逊鸟类(Thamnophilus aethiops)的多样化的时空背景,并将其与该多样化的不同假设和该分类中目前实行的分类法进行了对比。 mtDNA(细胞色素b和ND2)和核(β-纤维蛋白原内含子5和7以及Z样Musk4)基因的序列,加起来在89个个体中占了4093 bp,覆盖了拟南芥,拟南芥和大西洋森林的拟南芥种群被分析。系统发育和种群遗传学分析揭示了拟南芥中有10个相互单系的和遗传分离的或近乎分离的谱系,突显了该组分类学和进化史之间的一些矛盾之处。我们的数据表明,T。aethiops的多样化开始于安第斯高地,然后可能在现代亚马逊流域排水合并之后进入了亚马逊低地。拟南芥中主要的成岩事件可能与中新世-早更新世晚期的大型亚马逊河的形成和构造有关,这与为亚马逊生物的其他谱系提出的日期相吻合。人口遗传学数据不支持气候波动,这是拟南芥(T. aethiops)多样性的主要来源。即使与其他脊椎动物谱系的古生物地理模型不完全一致,我们的研究结果仍支持河流作为亚马逊地区多样化发展的主要推动力,同时强调不同的多样化情景可能与所比较群体的独特进化起源有关。 (C)2014 Elsevier Inc.保留所有权利。

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