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微卫星分析支持隐鳃鲵(美洲大鲵)的线粒体系统地理学。

Microsatellite analysis supports mitochondrial phylogeography of the hellbender (Cryptobranchus alleganiensis).

作者信息

Tonione Maria, Johnson Jarrett R, Routman Eric J

机构信息

Department of Biology, San Francisco State University, 1600 Holloway Avenue, San Francisco, CA 94132, USA.

出版信息

Genetica. 2011 Feb;139(2):209-19. doi: 10.1007/s10709-010-9538-9. Epub 2010 Dec 16.

Abstract

We investigated genetic diversity of the hellbender (Cryptobranchus alleganiensis) throughout its range in the eastern US using nuclear markers and compared our results to a previously published mitochondrial analysis. A variety of nuclear markers, including protein-coding gene introns and microsatellites were tested but only microsatellites were variable enough for population level analysis. Microsatellite loci showed moderate among population sharing of alleles, in contrast to the reciprocal monophyly exhibited by mitochondrial DNA. However, analyses using F-statistics and Bayesian clustering algorithms showed considerable population subdivision and clustered hellbender populations into the same major groups as the mtDNA. The microsatellites combined with the mtDNA data suggest that gene flow is severely restricted or non-existent among eight major groups, and potentially among populations (rivers) within groups. The combined mtDNA and microsatellite data suggest that the currently recognized hellbender subspecies are paraphyletic. We suggest that the eight independent groups identified in our study should be managed as such, rather than basing conservation decisions on the two named subspecies of hellbender.

摘要

我们利用核标记研究了美国东部隐鳃鲵(Cryptobranchus alleganiensis)整个分布范围内的遗传多样性,并将我们的结果与之前发表的线粒体分析结果进行了比较。我们测试了多种核标记,包括蛋白质编码基因内含子和微卫星,但只有微卫星具有足够的变异性用于群体水平分析。与线粒体DNA表现出的相互单系性相反,微卫星位点显示出中等程度的群体间等位基因共享。然而,使用F统计量和贝叶斯聚类算法的分析显示出相当大的群体细分,并将隐鳃鲵群体聚类为与线粒体DNA相同的主要群体。微卫星与线粒体DNA数据相结合表明,八个主要群体之间以及可能在群体内的种群(河流)之间基因流动受到严重限制或不存在。线粒体DNA和微卫星数据相结合表明,目前公认的隐鳃鲵亚种是并系的。我们建议,应将我们研究中确定的八个独立群体作为独立群体进行管理,而不是基于隐鳃鲵的两个命名亚种来做出保护决策。

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