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首页> 外文期刊>Molecular phylogenetics and evolution >Phylogenetic relationships of Hynobius naevius (Amphibia : Caudata) as revealed by mitochondrial 12S and 16S rRNA genes
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Phylogenetic relationships of Hynobius naevius (Amphibia : Caudata) as revealed by mitochondrial 12S and 16S rRNA genes

机译:线粒体12S和16S rRNA基因揭示的Hynobius naevius(两栖动物:Caudata)的亲缘关系

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Using mitochondrial 12S and 16S rRNA sequences, we investigated phylogenetic relationships among populations of the endemic Japanese salamander Hynobius naevius. Monophyly of this species was recovered only in the maximum parsimony tree and was unresolved in maximum likelihood and Bayesian trees. Instead the following four haplotype clades consistently emerged clearly: Clade 1 from northwestern Kyushu, Clade 2 from Chugoku and northeastern Kyushu, Clade 3 from western Shikoku and Kyushu, and Clade 4 from Chubu-Kinki and central-eastern Shikoku. Of these, Clades 1 and 2, and Clades 3 and 4, respectively, correspond to Groups A and B previously recognized from the analyses of allozyme data in this species, but monophyly of these groups was not strongly supported. Unlike the previous results, the western and eastern samples from Shikoku did not form a clade, and were grouped with Kyushu-B in Clade 3 and Chubu-Kinki in Clade 4, respectively. The reason for this conflict between mtDNA and allozyme results is unknown, but might be related to retention of ancestral mtDNA polymorphism in Shikoku populations. Nearly simultaneous divergence of as many as four lineages in wide-ranging H. naevius is inferred for the late Miocene-Pliocene history of this taxon. (c) 2005 Elsevier Inc. All rights reserved.
机译:使用线粒体12S和16S rRNA序列,我们调查了地方性日本salHynobius naevius种群之间的系统发生关系。仅在最大简约树中才恢复了该物种的单生,而在最大似然树和贝叶斯树中却未解决。相反,以下四个单倍型进化枝始终清晰地出现:来自九州西北部的进化枝1,来自中国北部和九州东北部的进化枝2,来自四国和九州西部的进化枝3和来自中部近畿和四国中部东部的进化枝4。其中,进化枝1和2以及进化枝3和4分别对应于先前从该物种的同工酶数据分析中识别出的A和B组,但这些组的单亲性没有得到大力支持。与以前的结果不同,四国的西部和东部样本没有形成分支,而是分别与第3类的九州B和第4类的中部近畿分组。 mtDNA和同工酶结果之间发生这种冲突的原因尚不清楚,但可能与四国人群中祖先的mtDNA多态性的保留有关。从该分类单元的中新世-上新世晚期,可以推断出在广泛的H. naevius中多达四个谱系几乎同时发散。 (c)2005 Elsevier Inc.保留所有权利。

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