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Big dams and salmon evolution: changes in thermal regimes and their potential evolutionary consequences

机译:大水坝和鲑鱼进化:热力状态的变化及其潜在的进化后果

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摘要

Dams designed for hydropower and other purposes alter the environments of many economically important fishes, including Chinook salmon (Oncorhynchus tshawytscha). We estimated that dams on the Rogue River, the Willamette River, the Cowlitz River, and Fall Creek decreased water temperatures during summer and increased water temperatures during fall and winter. These thermal changes undoubtedly impact the behavior, physiology, and life histories of Chinook salmon. For example, relatively high temperatures during the fall and winter should speed growth and development, leading to early emergence of fry. Evolutionary theory provides tools to predict selective pressures and genetic responses caused by this environmental warming. Here, we illustrate this point by conducting a sensitivity analysis of the fitness consequences of thermal changes caused by dams, mediated by the thermal sensitivity of embryonic development. Based on our model, we predict Chinook salmon likely suffered a decrease in mean fitness after the construction of a dam in the Rogue River. Nevertheless, these demographic impacts might have resulted in strong selection for compensatory strategies, such as delayed spawning by adults or slowed development by embryos. Because the thermal effects of dams vary throughout the year, we predict dams impacted late spawners more than early spawners. Similar analyses could shed light on the evolutionary consequences of other environmental perturbations and their interactions.
机译:为水力发电和其他目的而设计的水坝改变了许多经济上重要的鱼类的环境,包括奇努克鲑鱼(Oncorhynchus tshawytscha)。我们估计流氓河,威拉米特河,库利兹河和福尔克里克上的水坝在夏季降低了水温,而在秋季和冬季则升高了水温。这些热变化无疑会影响奇努克鲑鱼的行为,生理和生活史。例如,秋季和冬季相对较高的温度应加快生长和发育,从而导致鱼苗早期出现。进化论提供了预测这种环境变暖引起的选择性压力和遗传反应的工具。在这里,我们通过对由大坝引起的热变化的适应性后果进行敏感性分析来说明这一点,该适应性后果是由胚胎发育的热敏感性介导的。根据我们的模型,我们预计在流氓河上修建大坝后,奇努克鲑鱼的平均适应度可能会下降。但是,这些人口统计影响可能导致人们强烈选择了补偿策略,例如成虫延迟产卵或胚胎发育减慢。由于大坝的热效应全年变化,因此我们预计大坝对晚期产卵的影响要大于早期产卵的影响。类似的分析可以揭示其他环境扰动及其相互作用的进化后果。

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