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Using sea-ice to calibrate a dynamic trophic model for the Western Antarctic Peninsula

机译:使用海冰校准南极西部半岛的动态营养模型

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摘要

The pelagic ecosystems of the Western Antarctic Peninsula are dynamic and changing rapidly in the face of sustained warming. There is already evidence that warming may be impacting the food web. Antarctic krill, Euphausia superba, is an ice-associated species that is both an important prey item and the target of the only commercial fishery operating in the region. The goal of this study is to develop a dynamic trophic model for the region that includes the impact of the sea-ice regime on krill and krill predators. Such a model may be helpful to fisheries managers as they develop new management strategies in the face of continued sea-ice loss. A mass balanced food-web model (Ecopath) and time dynamic simulations (Ecosim) were created. The Ecopath model includes eight currently monitored species as single species to facilitate its future development into a model that could be used for marine protected area planning in the region. The Ecosim model is calibrated for the years 1996–2012. The successful calibration represents an improvement over existing Ecopath models for the region. Simulations indicate that the role of sea ice is both central and complex. The simulations are only able to recreate observed biomass trends for the monitored species when metrics describing the sea-ice regime are used to force key predator-prey interactions, and to drive the biomasses of Antarctic krill and the fish species Gobionotothen gibberifrons. This model is ready to be used for exploring results from sea-ice scenarios or to be developed into a spatial model that informs discussions regarding the design of marine protected areas in the region.
机译:面对持续变暖,南极西部半岛的远洋生态系统是动态变化的,并且变化迅速。已经有证据表明变暖可能会影响食物网。南极磷虾(Euphausia superba)是一种与冰有关的物种,既是重要的猎物,也是该地区唯一的商业性捕捞活动的目标。这项研究的目的是为该地区建立一个动态的营养模型,其中包括海冰制度对磷虾和磷虾捕食者的影响。这种模式可能对渔业管理人员有所帮助,因为他们面对不断的海冰损失制定新的管理战略。建立了质量平衡的食物网模型(Ecopath)和时间动态模拟(Ecosim)。生态路径模型包括八个目前作为单个物种进行监测的物种,以促进其未来发展成为可用于该地区海洋保护区规划的模型。 Ecosim模型已针对1996-2012年进行了校准。成功的校准代表了对该地区现有Ecopath模型的改进。模拟表明,海冰的作用既重要又复杂。当使用描述海冰状况的度量标准来强迫关键的捕食者与猎物相互作用并驱动南极磷虾和鱼类Gobionotothen赤霉素的生物量时,模拟只能为受监控物种重新创建观察到的生物量趋势。该模型可以用于探索海冰情景的结果,也可以开发成空间模型,从而为有关该地区海洋保护区设计的讨论提供参考。

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