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首页> 外文期刊>Deep-Sea Research >Phylogeography highlights two different Atlantic/Mediterranean lineages and a phenotypic latitudinal gradient for the deep-sea morid codling Lepidion lepidion (Gadiformes: Moridae)
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Phylogeography highlights two different Atlantic/Mediterranean lineages and a phenotypic latitudinal gradient for the deep-sea morid codling Lepidion lepidion (Gadiformes: Moridae)

机译:Phylogeography突出了两种不同的大西洋/地中海谱系和深海夜间编码lepidion lepidion的表型纬度梯度(gadiformes:moridae)

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摘要

In spite of our awareness that the biosphere is represented to a greater extent in the oceans than elsewhere, little is still known about the genetic structure and phylogeography of most deep-sea fish species. Here, different questions regarding the phenotypic and genetic diversity of deep-sea morid cod Lepidion lepidion across its distribution area have been investigated. Principal Component Analyses of 17 different morphological measurements indicated no differences between Atlantic Ocean and Mediterranean Sea, but the presence of a latitudinal phenotypic gradient. The genetic analyses comprised three mitochondrial and two nuclear markers. Neutrality tests and mismatch distributions indicated events of demographic expansion in the western Mediterranean Sea and the northeastern Atlantic Ocean that should be interpreted with caution due to the limited sample size. In addition, two different nuclear lineages partially mixed have been detected, suggesting isolation with secondary contact between the Atlantic Ocean and the Mediterranean Sea. Moderate genetic structure was found in Aviles Canyon (NW Iberian Peninsula) showing limitations to gene flow and asymmetric migration, probably due to the oceanographic conditions in the area. The results suggest that genetic connectivity of L. lepidion is probably due to its pelagic stages.
机译:尽管我们意识到生物圈在海洋中比其他地方更大程度地代表,但仍然符合大多数深海鱼类种类的遗传结构和播种地理。在此,研究了对其分布区域的深海泥氏氏氏氏氏氏乳氏乳头烯烯的表型和遗传多样性的不同问题。 17种不同形态学测量的主要成分分析表明大西洋和地中海之间没有差异,但存在纬度表型梯度的存在。遗传分析包括三个线粒体和两种核标志物。中立测试和不匹配分布表明,西地中海和东北大西洋的人口扩张事件应谨慎地解释,因为样品大小有限。此外,已经检测到部分混合的两种不同的核谱系,表明在大西洋与地中海之间的二次接触隔离。在Aviles Canyon(NW Iberian半岛)中发现了中度遗传结构,显示了对基因流动和不对称迁移的限制,可能是由于该地区的海洋学条件。结果表明,L. Lepidion的遗传连通性可能是由于其骨质阶段。

著录项

  • 来源
    《Deep-Sea Research》 |2020年第3期|103212.1-103212.11|共11页
  • 作者单位

    Ctr Interdisciplinar Invest Marinha & Ambiental C Ave Gen Norton de Matos S-N P-4450208 Matosinhos Portugal;

    Ctr Interdisciplinar Invest Marinha & Ambiental C Ave Gen Norton de Matos S-N P-4450208 Matosinhos Portugal;

    Xunta De Galicia Conselleria Mar & Medio Rural Serv Planificac Rua Irmandinos S-n Santiago De Compostela 15701 Spain|GEMM Puerto Deport S-n Ribeira 15960 A Coruna Spain;

    Ctr Oceanog Cadiz Inst Espanol Oceanog Muelle Levante S-n Cadiz 11006 Spain;

    Ctr Oceanog Cadiz Inst Espanol Oceanog Muelle Levante S-n Cadiz 11006 Spain;

    Univ Vigo Dept Biochem Genet & Immunol C Fonte Das Abelleiras S-n Vigo 36310 Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mtDNA; nDNA; Fish; Connectivity; Seamount; Submarine canyon;

    机译:mtdna;ndna;鱼;连接;海山;潜艇峡谷;

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