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Simulation of the combined effects of artisanal and recreational fisheries on a Mediterranean MPA ecosystem using a trophic model

机译:使用营养模型模拟手工和休闲渔业对地中海mpa生态系统的综合影响

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摘要

Marine protected areas (MPAs) have the potential to enhance the long-term sustainability of coastal resources, and the artisanal fisheries which depend on them. However, recreational fisheries, which are increasing their impacts on coastal resources worldwide, may reduce the benefits that MPAs provide to declining artisanal fisheries. Here we used the Bonifacio Straits Natural Reserve (BSNR) Corsica as a study case to simulate the combined effects on coastal resources of artisanal and recreational fishing efforts. The BSNR ecosystem was modelled using mass-balance modelling of trophic interactions. This model was compared to another built on a non-protected area from the same region. We aggregated fishing fleets into artisanal and recreational categories, and we simulated various combinations of fishing effort over a 20 yr dynamic simulation using Ecosim. We showed that fishing activities have an additional top-down effect on the food web and that they decrease the targeted group's biomass, such as piscivorous species. We found, for some trophic groups, non-trivial patterns of biomass variation through trophic cascades. Our trophic approach revealed that some groups may suffer a biomass decrease when MPAs are set or enforced, due to the combined effect of artisanal and recreational fisheries. Overall, our results illustrate the value of modelling to manage MPAs, as a complementary tool to surveys. Models provide the opportunity to anticipate the potential consequences, at the ecosystem level, of socio-political decisions that aim to sustain coastal resources while managing artisanal and recreational fisheries.
机译:海洋保护区(MPA)有潜力提高沿海资源以及依赖于这些资源的手工渔业的长期可持续性。但是,休闲渔业对全球沿海资源的影响正日益增加,可能会减少海洋保护区给手工渔业减少带来的好处。在这里,我们以可西嘉岛的Bonifacio海峡自然保护区(BSNR)为例,模拟了手工和休闲捕鱼活动对沿海资源的综合影响。使用营养相互作用的质量平衡模型对BSNR生态系统进行了建模。将该模型与另一个建立在同一区域非保护区域上的模型进行了比较。我们将捕鱼船队分为手工和休闲类别,并使用Ecosim在20年的动态模拟中模拟了各种捕捞努力组合。我们表明,捕鱼活动对食物网具有附加的自上而下的作用,并且减少了目标人群的生物量,如食鱼物种。我们发现,对于某些营养组,通过营养级联的生物量变化的非平凡模式。我们的营养方法表明,由于手工和休闲渔业的共同作用,在制定或实施MPA时,某些群体的生物量可能会减少。总体而言,我们的结果说明了管理MPA的建模价值,这是调查的补充工具。模型提供了一个机会,可以在生态系统层面上预测旨在维持沿海资源同时管理手工和休闲渔业的社会政治决策的潜在后果。

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