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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >A multispecies statistical age-structured model to assess predator-prey balance: application to an intensively managed Lake Michigan pelagic fish community
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A multispecies statistical age-structured model to assess predator-prey balance: application to an intensively managed Lake Michigan pelagic fish community

机译:用于评估捕食者与猎物平衡的多物种统计年龄结构模型:在集约化管理的密歇根湖中上层鱼类群落中的应用

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摘要

Using a Bayesian modeling approach, we developed a multispecies statistical age-structured model to assess trade-offs between predatory demands and prey productivities, with the aim to inform management of top predators. Focusing on the Lake Michigan fish community, we assessed these trade-offs in terms of predation mortalities and productivities of alewife (Alosa pseudoharengus) and rainbow smelt (Osmerus mordax) and functional responses of salmonines. Our predation mortality estimates suggested that salmonine consumption has been a major driver of prey dynamics, with sharp declines in alewife abundance in the 1960s-1980s and the 2000s coinciding with increased predation rates. Our functional response analysis indicated that feedback mechanisms are unlikely to help maintain a predator-prey balance, with Chinook salmon (Oncorhynchus tshawytscha) and lake trout (Salvelinus namaycush) consumption declining only at the lowest prey densities, while the other salmonines consumed prey at a maximum rate across all observed prey densities. This study demonstrates that a multispecies modeling approach combining stock assessment methods with explicit consideration of predator-prey interactions can provide a basis for tactical decision-making from a broader ecosystem perspective.
机译:我们使用贝叶斯建模方法,开发了一种多物种统计的年龄结构模型,以评估掠夺性需求与猎物生产率之间的权衡,目的是为管理顶级捕食者提供信息。着眼于密歇根湖鱼群,我们根据alewife(Alosa pseudoharengus)和彩虹熔炼物(Osmerus mordax)的捕食死亡率和生产力以及鲑鱼的功能响应来评估这些折衷。我们的捕食死亡率估计值表明,鲑鱼的消费一直是猎物动态的主要驱动力,在1960年代至1980年代和2000年代,白线鱼的丰度急剧下降,这与捕食率的上升相吻合。我们的功能反应分析表明,反馈机制不太可能帮助维持捕食者与猎物之间的平衡,其中奇努克鲑鱼(Oncorhynchus tshawytscha)和鳟鱼鲑(Salvelinus namaycush)的消费仅在最低猎物密度时下降,而其他鲑鱼在捕食时的捕食量最低。所有观测到的猎物密度中的最大比率。这项研究表明,将种群评估方法与捕食者-猎物相互作用的明确考虑相结合的多物种建模方法,可以从更广泛的生态系统角度为战术决策提供基础。

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