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Phylogenetics of wigeons and allies (Anatidae : Anas): the importance of sampling multiple loci and multiple individuals

机译:wigeons和同盟的系统发育学(Ana科:Anas):采样多个位点和多个个体的重要性

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摘要

Species-level DNA phylogenies frequently suffer from two shortcomings-gene trees usually are constructed from a single locus, and often species are represented by only one individual. To evaluate the effect of these two shortcomings, we tested phylogenetic hypotheses within the wigeons and allies, a clade of Anas ducks (Anatidae) composed of five species. We sequenced two nuclear introns from the Z-chromosome-linked chromo-helicase binding protein gene (CHD1Zb and CHD1Za) and the mitochondrial DNA (mtDNA) control region for multiple individuals sampled from widespread geographic locations. We compared these phylogenies to previously published phylogenies constructed from morphology and protein coding regions of mtDNA. Relative to other nuclear introns, CHD showed remarkable phylogenetic utility. Of the 26 CHD1Zb alleles identified, only one was shared between two species, and the combined CHD datasets revealed that four of the five species were consistent with monophyly. Several species shared mtDNA haplotypes, which probably was a result of interspecific hybridization. Overall, the nuclear CHD tree and the mtDNA tree were more congruent with coding regions of mtDNA than they were with morphology. (c) 2005 Elsevier Inc. All rights reserved.
机译:物种水平的DNA系统发育常遭受两个缺点-基因树通常是由单个位点构建的,并且物种通常仅由一个个体代表。为了评估这两个缺点的影响,我们测试了假肢和同伴(由五个物种组成的阿纳斯鸭(鸭科))内的系统发育假说。我们从Z染色体连锁的染色体解旋酶结合蛋白基因(CHD1Zb和CHD1Za)和线粒体DNA(mtDNA)控制区中测序了两个核内含子,用于从广泛的地理位置采样的多个个体。我们将这些系统发育与以前发表的根据mtDNA的形态和蛋白质编码区域构建的系统发育进行了比较。相对于其他核内含子,冠心病显示出显着的系统发育效用。在确定的26种CHD1Zb等位基因中,两个物种之间只有一个共享,而合并的CHD数据集显示,这5个物种中有4个与单亲一致。几个物种共享mtDNA单倍型,这可能是种间杂交的结果。总体而言,核CHD树和mtDNA树与mtDNA编码区比与形态更一致。 (c)2005 Elsevier Inc.保留所有权利。

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