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A metacommunity perspective on source-sink dynamics and management: the Baltic Sea as a case study

机译:元社区对源汇动态和管理的观点:以波罗的海为例

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摘要

The degree to which metapopulation processes influence fish stock dynamics is a largely unresolved issue in marine science and management, especially for highly mobile species such as Atlantic cod (Gadus morhua) and herring (Clupea harengus). The Baltic Sea comprises a heterogeneous oceanographic environment that structures the spatial and temporal distribution of the dominant species cod, herring, and sprat (Sprattus sprattus). Despite local differences, the stocks are traditionally managed as homogeneous units. Here, we present a metacommunity-perspective on source sink dynamics of Baltic Sea fish stocks by using a spatially disaggregated statistical food web model. The model is fitted to area-specific time series of multiple abiotic and biotic variables using state-space methods. Our analysis reveals pronounced net fluxes between areas, indicative of source sink dynamics, as well as area-specific differences in species interactions (i.e., density dependence, competition, and predator prey) and the degree of fishing and climate impact on survival and recruitment. Furthermore, model simulations show that decreasing exploitation pressure in the source area for cod (without reallocating fishing effort) produces an increase in neighboring sink habitats, but a decline of prey species in response to increased predation. Our approach provides valuable insight concerning metacommunity-structuring of marine fish and may serve as an important tool for implementing sustainable management strategies under the ecosystem approach to marine and fisheries management.
机译:在海洋科学和管理中,人口迁移过程对鱼类种群动态的影响程度在很大程度上尚未解决,特别是对于高度移动的物种,例如大西洋鳕(Gadus morhua)和鲱鱼(Clupea harengus)。波罗的海包括异质海洋环境,该环境构造了主要物种鳕鱼,鲱鱼和鲱鱼(Sprattus sprattus)的时空分布。尽管存在局部差异,但传统上将库存作为同质单位进行管理。在这里,我们通过使用空间分解的统计食物网模型,对波罗的海鱼类种群的源汇动态提出了一个元社区观点。使用状态空间方法将模型拟合到多个非生物和生物变量的区域特定时间序列。我们的分析揭示了区域之间明显的净通量,表明源汇动态,以及物种相互作用(即密度依赖性,竞争性和捕食性猎物)的区域特定差异以及捕鱼和气候对生存和补充的影响程度。此外,模型模拟表明,鳕鱼源地的开采压力降低(无需重新分配捕捞努力),会增加邻近水槽的生境,但随着捕食增加,猎物种类也会减少。我们的方法提供了有关海洋鱼类元社区构建的宝贵见解,并且可以作为在海洋和渔业管理的生态系统方法下实施可持续管理策略的重要工具。

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