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基于线粒体DNA和核基因变异的来自其最东部原生范围的鳟鱼(鲑属)的遗传多样性。

Genetic diversity of trout (genus Salmo) from its most eastern native range based on mitochondrial DNA and nuclear gene variation.

作者信息

Bernatchez L, Osinov A

机构信息

INRS-Eau, Sainte-Foy (Québec), Canada.

出版信息

Mol Ecol. 1995 Jun;4(3):285-97. doi: 10.1111/j.1365-294x.1995.tb00222.x.

Abstract

Russia and western Asia harbour trout populations that have been classified as distinct species and subspecies, most often on the basis of morphological and ecological variation. In order to assess their origins and to verify whether traditional taxonomy reflects their evolutionary distinctiveness, we documented their genetic relationships on the basis of mitochondrial DNA (mtDNA) RFLP, mtDNA sequence analysis, and allozyme variation. Both mtDNA and nuclear gene variation defined two ancient phylogenetic assemblages of populations distributed among northern (Baltic, White, Barents), and southern (Black, Caspian, Aral) sea basins, between which gene flow has been possible but limited in postglacial times. These results supported the traditional taxonomic differentiation between populations of these two regions. They provided weak support for the taxonomic distinction of southern brown trout (Salmo trutta) populations based on their basin of origin. They also refuted the hypothesis that L. Sevan trout (Salmo ischchan) diverged from a primitive brown trout ancestor. Nevertheless, all trout populations from southern sea basins possessed private alleles or mtDNA genotypes and were genetically distinct. Therefore, they represent unique gene pools that warrant individual recognition for conservation and management.

摘要

俄罗斯和西亚地区拥有已被归类为不同物种和亚种的鳟鱼种群,分类依据大多是形态学和生态学差异。为了评估它们的起源,并验证传统分类学是否反映了它们在进化上的独特性,我们基于线粒体DNA(mtDNA)限制性片段长度多态性、mtDNA序列分析和等位酶变异记录了它们的遗传关系。mtDNA和核基因变异都确定了两个古老的种群系统发育组合,分布在北部(波罗的海、白海、巴伦支海)和南部(黑海、里海、咸海)海盆之间,在冰期后的时期里,这两个海盆之间的基因流动虽然可能但受到限制。这些结果支持了这两个地区种群之间的传统分类学差异。它们为基于起源海盆对南部褐鳟(Salmo trutta)种群进行分类学区分提供了微弱支持。它们还反驳了塞凡湖鳟(Salmo ischchan)从原始褐鳟祖先分化而来的假设。然而,所有来自南部海盆的鳟鱼种群都拥有私有等位基因或mtDNA基因型,并且在基因上是独特的。因此,它们代表了独特的基因库,值得在保护和管理方面进行单独识别。

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