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Potential for anthropogenic disturbances to influence evolutionary change in the life history of a threatened salmonid

机译:人为干扰可能影响受威胁鲑鱼生活史的进化变化

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摘要

Although evolutionary change within most species is thought to occur slowly, recent studies have identified cases where evolutionary change has apparently occurred over a few generations. Anthropogenically altered environments appear particularly open to rapid evolutionary change over comparatively short time scales. Here, we consider a Pacific salmon population that may have experienced life-history evolution, in response to habitat alteration, within a few generations. Historically, juvenile fall Chinook salmon (Oncorhynchus tshawytscha) from the Snake River migrated as subyearlings to the ocean. With changed riverine conditions that resulted from hydropower dam construction, some juveniles now migrate as yearlings, but more interestingly, the yearling migration tactic has made a large contribution to adult returns over the last decade. Optimal life-history models suggest that yearling juvenile migrants currently have a higher fitness than subyearling migrants. Although phenotypic plasticity likely accounts for some of the change in migration tactics, we suggest that evolution also plays a significant role. Evolutionary change prompted by anthropogenic alterations to the environment has general implications for the recovery of endangered species. The case study we present herein illustrates the importance of integrating evolutionary considerations into conservation planning for species at risk.
机译:尽管大多数物种的进化变化被认为是缓慢发生的,但最近的研究已经确定了进化变化显然发生了几代的情况。人为改变的环境似乎特别容易在相对较短的时间尺度上迅速进化。在这里,我们考虑到太平洋鲑鱼种群可能在几代内经历了生活史演变,以应对栖息地的改变。从历史上看,来自斯内克河(Snake River)的少年秋努努鲑鱼(Oncorhynchus tshawytscha)作为亚一岁鲑移居到海洋。由于水力发电大坝建设导致河流条件的变化,一些少年现在作为一岁移徙,但更有趣的是,过去十年中,一岁移徙策略为成年回返做出了巨大贡献。最佳的生活史模型表明,一岁的未成年移民比一岁以下的移民具有更高的适应性。尽管表型可塑性可能解释了迁移策略的某些变化,但我们认为进化也起着重要作用。人为环境改变引起的进化变化对濒临灭绝物种的恢复具有普遍意义。我们在此提供的案例研究说明了将进化考虑因素纳入濒危物种保护计划的重要性。

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