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Ecosystem size predicts eco-morphological variability in a postglacial diversification

机译:生态系统规模预测冰期后生物多样性的生态形态变异

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Abstract Identifying the processes by which new phenotypes and species emerge has been a long-standing effort in evolutionary biology. Young adaptive radiations provide a model to study patterns of morphological and ecological diversification in environmental context. Here, we use the recent radiation (ca. 12k years old) of the freshwater fish Arctic charr ( Salvelinus alpinus ) to identify abiotic and biotic environmental factors associated with adaptive morphological variation. Arctic charr are exceptionally diverse, and in postglacial lakes there is strong evidence of repeated parallel evolution of similar morphologies associated with foraging. We measured head depth (a trait reflecting general eco-morphology and foraging ecology) of 1,091 individuals across 30 lake populations to test whether fish morphological variation was associated with lake bathymetry and/or ecological parameters. Across populations, we found a significant relationship between the variation in head depth of the charr and abiotic environmental characteristics: positively with ecosystem size (i.e., lake volume, surface area, depth) and negatively with the amount of littoral zone. In addition, extremely robust-headed phenotypes tended to be associated with larger and deeper lakes. We identified no influence of co-existing biotic community on Arctic charr trophic morphology. This study evidences the role of the extrinsic environment as a facilitator of rapid eco-morphological diversification.
机译:摘要识别新表型和新物种出现的过程一直是进化生物学的长期努力。年轻的适应性辐射为研究环境中的形态和生态多样化模式提供了一个模型。在这里,我们使用淡水鱼北极鲑(Salvelinus alpinus)的最近辐射(大约12k年)来确定与适应性形态变化相关的非生物和生物环境因素。北极红点鲑异常丰富,在冰河后湖泊中,有很强的证据表明与觅食相关的相似形态反复平行演化。我们测量了30个湖泊种群中1,091个人的头深(反映一般生态形态和觅食生态的特征),以测试鱼的形态变化是否与湖泊测深和/或生态参数有关。在整个种群中,我们发现炭黑的头部深度变化与非生物环境特征之间存在显着关系:与生态系统大小(即湖泊体积,表面积,深度)呈正相关,与沿海区域的数量呈负相关。此外,极鲁robust的表型往往与更大和更深的湖泊有关。我们没有发现共存的生物群落对北极Charr营养形态的影响。这项研究证明了外部环境在快速促进生态形态多样化方面的作用。

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