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基于线粒体DNA数据推断的喜鹊属(Pica)系统发育

Phylogeny of magpies (genus Pica) inferred from mtDNA data.

作者信息

Lee Sang-im, Parr Cynthia S, Hwang Youna, Mindell David P, Choe Jae C

机构信息

School of Biological Sciences, Seoul National University, Kwanak-ku Shilim-dong San 56-1, Seoul, 151-742, South Korea.

出版信息

Mol Phylogenet Evol. 2003 Nov;29(2):250-7. doi: 10.1016/s1055-7903(03)00096-4.

Abstract

We investigated the phylogenetic relationships of species and subspecies of the cosmopolitan genus Pica using 813 bp of the mitochondrial genome (including portions of 16s rDNA, tRNA-Leu, and ND1). The phylogenetic relationships within the genus Pica revealed in our molecular analyses can be summarized as follows: (1). the Korean magpie (Pica pica sericea) appears basal within the genus Pica; (2). the European magpie (Pica pica pica) shows a close relationship to the Kamchatkan magpie (Pica pica camtschatica); (3). two North American species (Pica hudsonia and Pica nuttalli) shows a sister-group relationship; (4). most importantly, the European+Kamchatkan clade appears more closely related to the North American clade than to Korean magpies. Based on these results and genetic distance data, it is possible that members of an ancestral magpie lineage in East Asia initially moved north to form Kamchatkan magpies and then crossed the Bering land bridge to found North American taxa. At a later date, a group might have split off from Kamchatkan magpies and migrated west to form the Eurasian subspecies. The divergence between the two North American taxa appears to have happened no later than the divergence of Eurasian subspecies and both processes appear to have been relatively rapid. Rather than the formation of P. hudsonia by re-colonization from an Asian magpie ancestor, as suggested by, our data suggest a shared ancestry between P. hudsonia and P. nuttalli. Based on the above findings, including phylogenetic placement of P. hudsonia and P. nuttalli as nested within the larger Pica pica clade, and the lack of evidence suggesting reproductive isolation within the genus Pica, we believe that the current classification may be inaccurate. A more conservative classification would recognize one monophyletic species (i.e., P. pica) and treat P. nuttalli and P. hudsonia as subspecies (i.e., P. p. nuttalli and P. p. hudsonia). More extensive studies on the population genetics and biogeography of magpies should be conducted to better inform any taxonomic decisions.

摘要

我们利用线粒体基因组的813个碱基对(包括16s rDNA、tRNA - Leu和ND1的部分序列),研究了广布种喜鹊属物种和亚种的系统发育关系。我们分子分析中揭示的喜鹊属内的系统发育关系可总结如下:(1). 朝鲜喜鹊(Pica pica sericea)在喜鹊属内似乎处于基部位置;(2). 欧洲喜鹊(Pica pica pica)与堪察加喜鹊(Pica pica camtschatica)关系密切;(3). 两种北美物种(Pica hudsonia和Pica nuttalli)呈现姐妹群关系;(4). 最重要的是,欧洲+堪察加分支与北美分支的关系似乎比与朝鲜喜鹊的关系更密切。基于这些结果和遗传距离数据,东亚一个祖先喜鹊谱系的成员最初可能向北迁移形成堪察加喜鹊,然后穿越白令陆桥形成北美类群,这是有可能的。在后来的某个时候,一个群体可能从堪察加喜鹊中分离出来并向西迁移形成欧亚亚种。两个北美类群之间的分化似乎不晚于欧亚亚种的分化,而且这两个过程似乎都相对较快。我们的数据表明P. hudsonia和P. nuttalli之间有共同的祖先,而不是像之前所认为的那样,P. hudsonia是由亚洲喜鹊祖先重新定殖形成的。基于上述发现,包括P. hudsonia和P. nuttalli在更大的喜鹊属(Pica pica)分支中的系统发育位置,以及缺乏表明喜鹊属内存在生殖隔离的证据,我们认为目前的分类可能不准确。一个更保守的分类将承认一个单系物种(即喜鹊属P. pica),并将P. nuttalli和P. hudsonia视为亚种(即P. p. nuttalli和P. p. hudsonia)。应该对喜鹊的种群遗传学和生物地理学进行更广泛的研究,以便为任何分类学决策提供更好的信息。

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