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首页> 外文期刊>The Journal of Applied Ecology >American eel personality and body length influence passage success in an experimental fishway
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American eel personality and body length influence passage success in an experimental fishway

机译:美国鳗鱼人格和身体长度的影响通过在一个实验性的鱼道的成功

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摘要

1. Millions of dams impair watershed connectivity across the globe and have severely affected migratory fish populations. Fishways offer upstream passage opportunities, but artificial selection may be imposed by these structures. Using juvenile American eel Anguilla rostrata as a model species, we consider whether individual differences in behaviour (i.e. personality) and fish size can predict passage success. 2. We evaluated the expression of bold and exploratory behaviours using open field and emergence assays in the laboratory. Then we assessed the propensity for individuals to volitionally climb through an experimental fishway to understand if personality and fish size could predict climbing success. 3. We demonstrate personality in juvenile eels, and swimming speed in the open field was negatively associated with climbing propensity. Slower swimmers were up to 60% more likely to use the passage device suggesting that more exploratory eels incurred greater passage success. For successful climbers, climbing time was negatively associated with fish length. 4. Synthesis and applications. Our results suggest fish may segregate at barriers based on personality and size. Preventing a subset of individuals from accessing upstream habitat is likely to have negative consequences for fish populations and aquatic ecosystems. Selection may be alleviated by increasing passage opportunities, maximizing fishway attraction and avoiding inefficient passage solutions.
机译:1. 在全球范围内受到严重影响洄游鱼类种群。上游段的机会,但人工选择可以由这些结构。使用青少年美国鳗鱼安圭拉岛rostrata一个模型物种,我们考虑是否个人行为上的差异(即人格)鱼的大小可以预测通道成功。大胆的表达和探索行为使用开放领域和化验出现在实验室里。倾向于个人意志地爬通过实验了解如果鱼道个性和鱼的大小可以预测攀爬成功。少年鳗鱼,游泳速度场消极与登山有关倾向。可能使用的设备说明更多的探索性鳗鱼发生更大的通道成功。是消极与鱼的长度有关。合成和应用程序。基于鱼类可能隔离障碍个性和大小。个人访问上游的栖息地鱼可能有负面影响人口和水生生态系统。通过增加通道被缓解和机会,最大化鱼道吸引力避免效率低下通道解决方案。

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