首页> 外文学位 >Molecular systematics, phylogeography, and population genetics of Xiphorhynchus (Aves: Dendrocolaptidae) in the Amazon Basin.
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Molecular systematics, phylogeography, and population genetics of Xiphorhynchus (Aves: Dendrocolaptidae) in the Amazon Basin.

机译:亚马孙河流域犀鸟的分子系统学,系统地理学和种群遗传学(Aves:Dendrocolaptidae)。

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摘要

Among those few hypotheses amenable to falsification by phylogenetic methods concerning the diversification of the Amazonian biota, three can be singled out because of their verifiable predictions: the riverine barrier, the gradient, and the basal trichotomy hypotheses. I used phylogenetic and population genetics methods to reconstruct the diversification history of the genus Xiphorhynchus (aves: Dendrocolaptidae) in Amazonia. First, I estimated the phylogeny of the entire genus Xiphorhynchus to test a key prediction of the gradient hypothesis; secondly, I documented phylogeographies of a superspecies associated with upland forest (X. spixii/elegans) and two species linked to floodplain forest (X. kienerii and X. obsoletus) to evaluate predictions of the riverine barrier and basal trichotomy hypotheses. The phylogeny estimated for the genus Xiphorhynchus falsified an anticipated sister relationship between floodplain and upland forest species, as predicted by the gradient hypothesis. Phylogeographic and population genetics analyses of the upland forest superspecies (X. spixii/elegans), and floodplain forest species (X. kienerii and X. obsoletus) indicated that predictions of the riverine barrier hypothesis hold only for populations of the upland forest superspecies separated by rivers located on the Brazilian shield; in contrast, rivers located in western Amazonia did not represent areas of primary divergence for populations of X. spixii/elegans. As expected, populations of the floodplain forest species showed high levels of gene flow and no geographic structure throughout the entire Amazon basin, a pattern consistent with their expected capacity to overcome riverine barriers. In agreement with predictions of the basal trichotomy hypothesis, populations of the X. spixii/elegans superspecies found on the Brazilian shield were basal in the phylogeny, exhibiting some population genetics attributes typical of old populations having reached equilibrium. In contrast, populations found in western Amazonia were more recently derived and experienced a dramatic recent population expansion, probably colonizing the area from the geologically older Brazilian shield. The data presented herein supported important predictions of the basal trichotomy and riverine barrier hypotheses, indicating that they are not mutually exclusive, and may together account for the diversification of the genus Xiphorhynchus in Amazonia at different temporal and geographical scales.
机译:在通过种系进化方法伪造的关于亚马孙生物区系多样化的少数假说中,由于其可验证的预测,可以将其中的三个选出来:河道屏障,坡度和基础三分法假说。我使用系统发育和种群遗传学方法重建了亚马逊地区 Xiphorhynchus (ave:Dendrocolaptidae)的多样化历史。首先,我估计整个 Xiphorhynchus 的系统发育,以测试对梯度假说的关键预测;其次,我记录了与旱地森林( X。spixii / elegans )和与泛滥森林有关的两个物种( X。kienerii X)相关的超级物种的系统记录。 Obitaltus ),以评估对河壁屏障和基础三分法假说的预测。如斜率假说所预测的, Xiphorhynchus 属的系统进化论改变了洪泛区和山地森林物种之间的预期姐妹关系。陆上森林超物种( s。pix./elegans )和洪泛区森林物种( X。kienerii X。obsoletus )指出,对河流屏障假说的预测仅适用于被巴西盾上的河流分隔的山地森林超级物种的种群;相比之下,位于亚马孙州西部的河流并不能代表 X. spixii / elegans 种群的主要分流区域。正如预期的那样,洪泛区森林物种的种群在整个亚马逊河流域显示出高水平的基因流动,没有地理结构,这与他们克服河流屏障的预期能力相符。与基础三分法假说的预测一致, X群体。在巴西盾上发现的spixii / elegans 超级物种是系统发育的基础,表现出一些已经达到平衡的老种群典型的种群遗传学特征。相比之下,在亚马逊河西部地区发现的种群是最近才衍生出来的,并且最近种群数量急剧增加,可能是从地质较旧的巴西盾牌殖民了该地区。本文提供的数据支持对基础三分法和河流屏障假设的重要预测,表明它们不是互斥的,并且可以共同解释亚马逊地区 Xiphorhynchus 在不同的时间和地理范围内的多样性。

著录项

  • 作者

    Aleixo, Alexandre Luis.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Biology Zoology.; Biology Genetics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;遗传学;
  • 关键词

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