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Spatial and ecological population genetic structures within two island‐endemic Aeonium species of different niche width

机译:不同生态位宽度的两个岛屿特有的永生物种内部的空间和生态种群遗传结构

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摘要

The Crassulacean genus Aeonium is a well‐known example for plant species radiation on oceanic archipelagos. However, while allopatric speciation among islands is documented for this genus, the role of intra‐island speciation due to population divergence by topographical isolation or ecological heterogeneity has not yet been addressed. The aim of this study was to investigate intraspecific genetic structures and to identify spatial and ecological drivers of genetic population differentiation on the island scale. We analyzed inter simple sequence repeat variation within two island‐endemic Aeonium species of La Palma: one widespread generalist that covers a large variety of different habitat types (Ae. davidbramwellii) and one narrow ecological specialist (Ae. nobile), in order to assess evolutionary potentials on this island. Gene pool differentiation and genetic diversity patterns were associated with major landscape structures in both species, with phylogeographic implications. However, overall levels of genetic differentiation were low. For the generalist species, outlier loci detection and loci–environment correlation approaches indicated moderate signatures of divergent selection pressures linked to temperature and precipitation variables, while the specialist species missed such patterns. Our data point to incipient differentiation among populations, emphasizing that ecological heterogeneity and topographical structuring within the small scales of an island can foster evolutionary processes. Very likely, such processes have contributed to the radiation of Aeonium on the Canary Islands. There is also support for different evolutionary mechanisms between generalist and specialist species.
机译:Crassulacean的永生属是海洋群岛上植物物种辐射的一个著名例子。然而,尽管已记录了该属的岛间异化物种形成,但由于地形隔离或生态异质性引起的种群差异,岛内物种形成的作用尚未得到解决。这项研究的目的是调查种内遗传结构,并确定岛屿规模上遗传种群分化的空间和生态驱动力。我们分析了拉帕尔玛岛的两种岛屿特有的永世物种之间的简单序列重复变异:一名广泛的通才,涵盖了多种不同的栖息地类型(aevidarmwellii)和一名狭窄的生态专家(ae.nobile),以进行评估这个岛上的进化潜力。基因库的分化和遗传多样性模式与这两个物种的主要景观结构有关,具有系统地理学意义。但是,总体遗传分化水平很低。对于多面手物种,离群基因座检测和基因座与环境的相关方法表明,与温度和降水变量有关的不同选择压力具有中等特征,而专业物种则没有这种模式。我们的数据指出了种群之间的初始差异,强调了在小岛屿规模内的生态异质性和地形结构可以促进进化过程。这种过程很可能促进了加那利群岛上永生的辐射。通才物种和专长物种之间也存在不同的进化机制。

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