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首页> 外文期刊>Biology Letters >Variation in palaeo-shorelines explains contemporary population genetic patterns of rocky shore species
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Variation in palaeo-shorelines explains contemporary population genetic patterns of rocky shore species

机译:Palaeo-Shorelines的变异解释了岩石岸上物种的当代人口遗传模式

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摘要

Processes driving and maintaining disjunct genetic populations in marine systems are poorly understood, owing to a lack of evidence of hard barriers that could have shaped patterns of extant population structure. Here, we map two genetically divergent lineages of an obligate rocky shore fish, Clinus cottoides, and model sea-level change during the last 110 000 years to provide the first evidence of a vicariant event along the southern coastline of Africa. Results reveal that lowered sea levels during glacial periods drastically reduced rocky intertidal habitat, which may have isolated populations in two refugia for at least 40 000 years. Contemporary coastal dynamics and oceanography explain secondary contact between lineages. This scenario provides an explanation for the origin of population genetic breaks despite a lack of obvious present-day geographical barriers and highlights the need for including palaeo-oceanography in unravelling extant population patterns.
机译:由于缺乏可能具有现存群体结构的形状模式的硬屏障的证据缺乏证据,因此驾驶和维持脱落遗传群体的流程较差。 在这里,我们在过去的110 000年期间映射了两种遗传性岩石岸上鱼,Clinus Cottoides和Model Sea-Light Model Sea级变化,以提供沿着非洲南部海岸线的牧师活动的第一个证据。 结果表明,冰川时期的降低海平面大幅减少岩石跨度栖息地,这可能有两次避难所的分离的群体至少为达40 000年。 当代沿海动力学和海洋学解释衬里之间的二次接触。 这种情况为人口遗传休息的起源提供了解释,尽管现在缺乏明显的本日地理障碍,并且突出了在解开现存群体模式下包括古怪海洋学的需求。

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