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更多的分类群,更多的特征:麝雉问题仍未解决。

More taxa, more characters: the hoatzin problem is still unresolved.

作者信息

Sorenson Michael D, Oneal Elen, Garcia-Moreno Jaime, Mindell David P

机构信息

Department of Biology, Boston University, USA.

出版信息

Mol Biol Evol. 2003 Sep;20(9):1484-98. doi: 10.1093/molbev/msg157. Epub 2003 May 30.

Abstract

The apparently rapid and ancient diversification of many avian orders complicates the resolution of their relationships using molecular data. Recent studies based on complete mitochondrial DNA (mtDNA) sequences or shorter lengths of nuclear sequence have helped corroborate the basic structure of the avian tree (e.g., a basal split between Paleognathae and Neognathae) but have made relatively little progress in resolving relationships among the many orders within Neoaves. We explored the potential of a moderately sized mtDNA data set ( approximately 5000 bp for each of 41 taxa), supplemented with data from a nuclear intron ( approximately 700 bp per taxon), to resolve relationships among avian orders. Our sampling of taxa addresses two issues: (1). the sister relationship and monophyly, respectively, of Anseriformes and Galliformes and (2). relationships of the enigmatic hoatzin Opisthocomus hoazin. Our analyses support a basal split between Galloanserae and Neoaves within Neognathae and monophyly of both Galliformes and Anseriformes. Within Galliformes, megapodes and then cracids branch basally. Within Anseriformes, mitochondrial data support a screamer (Anhimidae) plus magpie goose (Anseranatidae) clade. This result, however, may be an artifact of divergent base composition in one of the two anatids we sampled. With deletion of the latter taxon, Anseranas is sister to anatids as in traditional arrangements and recent morphological studies. Although our data provide limited resolution of relationships within Neoaves, we find no support for a sister relationship between either cuckoos (Cuculiformes) or turacos (Musophagiformes) and hoatzin. Both mitochondrial and nuclear data are consistent with a relationship between hoatzin and doves (Columbiformes), although this result is weakly supported. We also show that mtDNA sequences reported in another recent study included pervasive errors that biased the analysis towards finding a sister relationship between hoatzin and turacos.

摘要

许多鸟类目明显快速且古老的多样化,使得利用分子数据解析它们之间的关系变得复杂。基于完整线粒体DNA(mtDNA)序列或较短核序列长度的近期研究,有助于证实鸟类谱系的基本结构(例如,古颚类和今颚类之间的基部类群分化),但在解析新鸟亚纲内众多目之间的关系方面进展相对较小。我们探索了一个中等规模的mtDNA数据集(41个分类单元,每个约5000 bp),并辅以核内含子数据(每个分类单元约700 bp)来解析鸟类目之间关系的潜力。我们对分类单元的抽样解决了两个问题:(1)雁形目和鸡形目的姊妹关系及单系性,以及(2)神秘的麝雉(Opisthocomus hoazin)的关系。我们的分析支持今颚类内鸡雁小纲和新鸟亚纲之间的基部类群分化,以及鸡形目和雁形目的单系性。在鸡形目内,冢雉类然后是凤冠雉科在基部处分支。在雁形目内,线粒体数据支持一个叫鸭科(Anhimidae)加鹊鹅(Anseranatidae)的类群。然而,这一结果可能是我们所抽样的两个鸭科动物之一碱基组成差异的产物。去除后一个分类单元后,鹊鹅属(Anseranas)如同传统分类及近期形态学研究所显示的那样,是鸭科动物的姊妹分类单元。尽管我们的数据对新鸟亚纲内的关系提供的分辨率有限,但我们没有发现杜鹃目(Cuculiformes)或蕉鹃目(Musophagiformes)与麝雉之间存在姊妹关系的证据。线粒体和核数据均与麝雉和鸽形目(Columbiformes)之间的关系一致,尽管这一结果的支持力度较弱。我们还表明,另一项近期研究中报道的mtDNA序列存在普遍错误,这些错误使分析偏向于得出麝雉和蕉鹃之间存在姊妹关系的结论。

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