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Data from: Rapid buildup of sympatric species diversity in Alpine whitefish

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DataONE2018-08-30 更新2024-06-08 收录
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Adaptive radiations in postglacial fish offer excellent settings to study the evolutionary mechanisms involved in the rapid buildup of sympatric species diversity from a single lineage. Here, we address this by exploring the genetic and ecological structure of the largest Alpine whitefish radiation known, that of Lakes Brienz and Thun, using microsatellite data of more than 2000 whitefish caught during extensive species‐targeted and habitat‐randomized fishing campaigns. We find six strongly genetically and ecologically differentiated species, four of which occur in both lakes, and one of which was previously unknown. These four exhibit clines of genetic differentiation that are paralleled in clines of eco‐morphological and reproductive niche differentiation, consistent with models of sympatric ecological speciation along environmental gradients. In Lake Thun, we find two additional species, a profundal specialist and a species introduced in the 1930s from another Alpine whitefish radiation. Strong genetic differentiation between this introduced species and all native species of Lake Thun suggests that reproductive isolation can evolve among allopatric whitefish species within 15,000 years and persist in secondary sympatry. Consistent with speciation theory, we find stronger correlations between genetic and ecological differentiation for sympatrically than for allopatrically evolved species.

冰期后鱼类的适应辐射(adaptive radiation)为探究单一谱系快速形成同域物种多样性的演化机制提供了绝佳的研究体系。本研究以目前已知规模最大的阿尔卑斯白鱼(Alpine whitefish)适应辐射类群——布里恩茨湖与图恩湖白鱼类群为研究对象,依托大规模物种靶向且生境随机化的捕捞作业中捕获的2000余尾白鱼的微卫星(microsatellite)数据,解析其遗传与生态结构。研究共鉴定出6个遗传与生态分化显著的物种,其中4个物种同时分布于两个湖泊,另有1个为此前未被记录的新物种。这4个广布物种呈现出清晰的遗传分化梯度,且该梯度与生态形态及繁殖生态位的分化梯度高度吻合,契合沿环境梯度发生的同域生态物种形成模型。在图恩湖中,我们还发现了另外2个物种:一种为深底带专性物种,另一种是1930年代从另一阿尔卑斯白鱼适应辐射类群引入的外来物种。该引入物种与图恩湖所有本土物种间均存在强烈的遗传分化,这表明生殖隔离可在15000年内于异域分布的白鱼物种间演化形成,并在次级同域分布状态下得以维持。本研究结果与物种形成理论一致:同域演化物种间的遗传分化与生态分化的相关性,显著强于异域演化物种间的相关性。

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2018-08-30
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