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Morphological divergence and flow‐induced phenotypic plasticity in a native fish from anthropogenically altered stream habitats

机译:人为改变河流栖息地的本地鱼类的形态学差异和流量诱导的表型可塑性

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AbstractUnderstanding population-level responses to human-induced changes to habitats can elucidate the evolutionary consequences of rapid habitat alteration. Reservoirs constructed on streams expose stream fishes to novel selective pressures in these habitats. Assessing the drivers of trait divergence facilitated by these habitats will help identify evolutionary and ecological consequences of reservoir habitats. We tested for morphological divergence in a stream fish that occupies both stream and reservoir habitats. To assess contributions of genetic-level differences and phenotypic plasticity induced by flow variation, we spawned and reared individuals from both habitats types in flow and no flow conditions. Body shape significantly and consistently diverged in reservoir habitats compared with streams; individuals from reservoirs were shallower bodied with smaller heads compared with individuals from streams. Significant population-level differences in morphology persisted in offspring but morphological variation compared with field-collected individuals was limited to the head region. Populations demonstrated dissimilar flow-induced phenotypic plasticity when reared under flow, but phenotypic plasticity in response to flow variation was an unlikely explanation for observed phenotypic divergence in the field. Our results, together with previous investigations, suggest the environmental conditions currently thought to drive morphological change in reservoirs (i.e., predation and flow regimes) may not be the sole drivers of phenotypic change.
机译:摘要理解人类对生境变化的种群水平反应可以阐明生境快速变化的进化后果。在溪流上建造的水库使溪流鱼类在这些生境中遭受新的选择性压力。评估这些生境促成性状差异的驱动因素,将有助于确定水库生境的进化和生态后果。我们测试了同时占据溪流和水库栖息地的溪流鱼的形态学差异。为了评估由流量变化引起的遗传水平差异和表型可塑性的贡献,我们在流量和无流量条件下从两种生境类型中产卵和饲养个体。与溪流相比,水库生境中的体形显着一致地发散;与水流个体相比,水库个体较浅,头部较小。子代中仍存在明显的群体水平形态差异,但与田间采集的个体相比,形态变异仅限于头部区域。种群在水流下饲养时表现出不同的水流诱导型表型可塑性,但是响应水流变化的表型可塑性并不是该领域观察到的表型差异的解释。我们的结果以及先前的研究表明,目前认为驱动储层形态变化的环境条件(即捕食和流动状态)可能不是表型变化的唯一驱动因素。

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