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Modelling multi-species interactions in the Barents Sea ecosystem with special emphasis on minke whales and their interactions with cod, herring and capelin

机译:对巴伦支海生态系统中的多种物种相互作用进行建模,并特别强调小须鲸及其与鳕鱼,鲱鱼和毛鳞鱼的相互作用

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摘要

The Barents Sea ecosystem, one of the most productive and commercially important ecosystems in the world, has experienced major fluctuations in species abundance the past five decades. Likely causes are natural variability, climate change, overfishing and predator-prey interactions. In this study, we use an age-length structured multi-species model (Gadget, Globally applicable Area-Disaggregated General Ecosystem Toolbox) to analyse the historic population dynamics of major fish and marine mammal species in the Barents Sea. The model was used to examine possible effects of a number of plausible biological and fisheries scenarios. The results suggest that changes in cod mortality from fishing or cod cannibalism levels have the largest effect on the ecosystem, while changes to the capelin fishery have had only minor effects. Alternate whale migration scenarios had only a moderate impact on the modelled ecosystem. Indirect effects are seen to be important, with cod fishing pressure, cod cannibalism and whale predation on cod having an indirect impact on capelin, emphasising the importance of multi-species modelling in understanding and managing ecosystems. Models such as the one presented here provide one step towards an ecosystem-based approach to fisheries management.
机译:巴伦支海生态系统是世界上生产力最高和商业上最重要的生态系统之一,在过去的五十年中物种丰富度出现了重大波动。原因可能是自然变异,气候变化,过度捕捞和食肉动物与猎物的相互作用。在这项研究中,我们使用年龄结构的多物种模型(Gadget,全球适用的按区域划分的总体生态系统工具箱)来分析巴伦支海主要鱼类和海洋哺乳动物物种的历史种群动态。该模型用于检查许多合理的生物和渔业情景的可能影响。结果表明,捕捞或鳕鱼食人水平引起的鳕鱼死亡率变化对生态系统的影响最大,而对毛鳞鱼渔业的变化影响很小。鲸鱼候补替代方案对建模生态系统的影响仅中等。间接影响被认为是重要的,鳕鱼的捕捞压力,鳕鱼的自相残杀和鲸鱼的捕食对毛鳞鱼有间接影响,强调了多物种建模在理解和管理生态系统中的重要性。诸如此处介绍的模型之类的模型为朝着基于生态系统的渔业管理方法迈出了一步。

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