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首页> 外文期刊>Heredity: An International Journal of Genetics >Nuclear and mitochondrial data reveal high genetic divergence among Atlantic and Mediterranean populations of the Iberian killifish Aphanius iberus (Teleostei : Cyprinodontidae)
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Nuclear and mitochondrial data reveal high genetic divergence among Atlantic and Mediterranean populations of the Iberian killifish Aphanius iberus (Teleostei : Cyprinodontidae)

机译:核和线粒体数据显示,伊比利亚杀人鱼Aphanius iberus(Teleostei:Cyprinodontidae)在大西洋和地中海种群之间存在高度遗传差异

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摘要

The molecular divergence and phylogenetic relationships of the Iberian populations of Aphanius iberus were established using allozymes and the complete cytochrome b gene sequence. Congruent results were found with both nuclear and mitochondrial molecular markers. The Mediterranean and Atlantic populations are clearly differentiated into two independent lineages. Their high molecular divergence suggests an early isolation, and the absence of gene flow among the populations indicates their independent evolution. The nuclear and mitochondrial data reveal monophyletic clustering of the two, geographical lineages, but provide weak support for the population relationships. However, the mitochondrial results differentiated the Villena population as a distinct mitochondrial unit within the Mediterranean group. Geographically broad studies across the distribution range of A. iberus have helped to elucidate the patterns of diversification of this species. The genetic divergence found between the Atlantic and the Mediterranean populations is of the same order as those found among recognized species of cyprinodontids. The identification of two discrete evolutionary lineages has important implications for the conservation of this species, since its recovery requires the recognition and preservation of natural diversity. The Mediterranean and Atlantic lineages should be managed separately to avoid loss of their genetic identity, and the genetic uniqueness of the populations should be preserved by using wild stocks as the source of genetic diversity in captive breeding programmes.
机译:利用同工酶和完整的细胞色素b基因序列,建立了伊比利亚伊比利亚伊比利亚种群的分子差异和系统发育关系。核和线粒体分子标记均发现了一致的结果。地中海和大西洋人口显然分为两个独立的血统。它们的高分子差异表明早期分离,而群体间基因流的缺乏表明它们是独立进化的。核和线粒体数据揭示了这两个地理谱系的单系聚类,但对种群关系提供了较弱的支持。但是,线粒体结果将维伦纳种群与地中海群中的线粒体单元区别开来。跨线虫分布范围的地理广泛研究有助于阐明该物种的多样性模式。在大西洋和地中海种群之间发现的遗传差异与在公认的犬齿类物种中发现的遗传差异相同。鉴定两个不连续的进化谱系对该物种的保护具有重要意义,因为其恢复需要承认和保存自然多样性。地中海和大西洋血统应分开管理,以免失去其遗传特性,并应通过将野生种群作为圈养繁殖计划中遗传多样性的来源来保护种群的遗传独特性。

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