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首页> 外文期刊>Marine ecology progress series >Current patterns, habitat discontinuities and population genetic structure: the case of the kelp Laminaria digitata in the English Channel
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Current patterns, habitat discontinuities and population genetic structure: the case of the kelp Laminaria digitata in the English Channel

机译:当前格局,生境不连续性和种群遗传结构:以英吉利海峡海带海带指状为例

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Laminaria digitata is the dominant species of the dense, continuous kelp stands in the English Channel and on the Atlantic coasts of France, where it is harvested for its high quality algi-nates. However, in spite of its ecological and economic importance, our knowledge of the level and organisation of genetic diversity in this species is scant. Here, using comprehensive hierarchical sampling and 7 microsatellite loci, we explored the roles of dispersal strategies, current regimes and habitat discontinuities in shaping genetic structure of L. digitata populations. Our results show that continuous, non-fragmented forests of L. digitata were genetically differentiated at distances greater than 10 km, despite the absence of clear population boundaries. Furthermore, a pattern of isolation-by-distance indicated that gene flow occurred preferentially among adjacent populations following a stepping-stone model. In addition, we analysed the direction of migration using assignment tests and found that currents appeared to play a minor role in orienting gene flow, except in the Gulf of Saint Malo gyre. In contrast, habitat discontinuities were found to accentuate genetic differentiation and resulted in reduced genetic variation of isolated stands. In the context of a potential over-exploitation of kelp stands in Brittany, this study suggests that the existence of neighbouring populations can be vital to maintaining high levels of gene flow and thus, genetic diversity in this species.
机译:指状海带是密集的,连续的海带林的主要种类,它们在英吉利海峡和法国的大西洋沿岸以其优质藻类而被收获。然而,尽管其具有生态和经济重要性,但我们对这种物种遗传多样性的水平和组织的了解却很少。在这里,使用全面的分层抽样和7个微卫星基因座,我们探讨了扩散策略,当前制度和栖息地不连续性在塑造指状乳酸杆菌种群遗传结构中的作用。我们的结果表明,尽管没有清晰的种群边界,但连续的,无碎片的指望草森林在大于10 km的距离上具有遗传差异。此外,按距离隔离的模式表明,遵循垫脚石模型,基因流优先出现在相邻种群之间。此外,我们使用分配测试分析了迁移的方向,发现电流在定向基因流中似乎起着较小的作用,除了在圣马洛湾的海湾。相反,发现栖息地的不连续性加剧了遗传分化,并导致孤立林的遗传变异减少。在布列塔尼海带潜在过度开发的背景下,这项研究表明,邻近种群的存在对于维持该物种的高水平基因流和因此的遗传多样性至关重要。

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