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Managing cryptic biodiversity: Fine‐scale intralacustrine speciation along a benthic gradient in Alpine whitefish (Coregonus spp.)

机译:管理神秘的生物多样性:高山白鱼沿底栖梯度的精细湖内物种形成(Coregonus spp。)

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摘要

Whitefish (Coregonus spp.) are an important catch for many freshwater fisheries, particularly in Switzerland. In support of this, supplemental stocking of whitefish species is carried out, despite lacking complete knowledge of the extent, distribution and origin of whitefish diversity in these lakes, potentially threatening local endemics via artificial gene flow. Here, we investigate phenotypic and genetic differentiation among coexisting whitefish species spawning along a depth gradient in a subalpine Swiss lake to better delineate intralacustrine whitefish biodiversity. We find depth‐related clines in adaptive morphology and in neutral genetic markers. This individual variation is structured in three distinct clusters with spatial overlap. Individual genetic distances correlate strongly with differences in growth rate and gill‐raker number, consistent with predictions of isolation‐by‐adaptation and ecological speciation. Genetic differentiation between species suggests reproductive isolation, despite demographic admixture on spawning grounds. Our results are consistent with clinal speciation resulting in three species coexisting in close ecological parapatry, one (C. sp. “benthic intermediate”) being previously unknown. A second unknown species spawning in close proximity was found to be of potential allochthonous origin. This study highlights the importance of taxonomically unbiased sampling strategies to both understand evolutionary mechanisms structuring biodiversity and to better inform conservation and fisheries management.
机译:白鱼(Coregonus spp。)是许多淡水渔业的重要捕获物,特别是在瑞士。为此,尽管缺乏对这些湖泊中白鱼多样性的程度,分布和起源的完全了解,但仍进行了白鱼物种的补充放养,这可能通过人工基因流动威胁当地特有物种。在这里,我们调查了在亚高山瑞士湖中沿深度梯度产卵的共存白鲑物种之间的表型和遗传分化,以更好地描绘湖内白鲑的生物多样性。我们在适应性形态学和中性遗传标记中发现了与深度有关的种系。这种个体差异被构造为三个具有空间重叠的不同簇。个体的遗传距离与生长率和g耙数量的差异密切相关,这与适应隔离和生态物种形成的预测一致。物种间的遗传分化表明生殖隔离,尽管在产卵场上人口混杂。我们的结果与近缘物种形成相吻合,后者导致三种物种共存于紧密的生态种群中,其中一种(C. sp。“底栖中间体”)以前未知。发现附近产生的第二个未知物种是潜在的异源起源。这项研究强调了分类学上无偏见的采样策略对于理解构造生物多样性的进化机制以及更好地为保护和渔业管理提供信息的重要性。

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