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Combination of genetics and spatial modelling highlights the sensitivity of cod (Gadus morhua) population diversity in the North Sea to distributions of fishing

机译:遗传学和空间模型的结合突显了北海鳕鱼种群(Gadus morhua)对捕捞分布的敏感性

摘要

Conserving genetic diversity in animal populations is important for sustaining their ability to respond to environmental change. However, the ‘between-population’ component of genetic diversity (biocomplexity) is threatened in many exploited populations, particularly marine fish, where harvest management regions may be larger than the spatial extent of genetically distinct sub-populations. Using single nucleotide polymorphism (SNP) data we delineated the geographic limits of three population units of Atlantic cod (Gadus morhua) in northwest European waters. Two of the populations co-habit the North Sea, and trawl survey data showed differing trends in their abundances. We developed a spatial model of these units to simulate population dynamics under spatial patterns of harvesting, Competition between units during the pelagic juvenile stages in the model led to suppression of the more localised northern North Sea (Viking) unit by the more widespread (Dogger) unit, and its premature extinction under some spatial patterns of fishing. Fishery catch limits for cod are set at the scale of the whole North Sea without regard to such sub-population dynamics. Our model offers a method to quantify adjustments to regional fishing mortality rates to strike a balance between maximising sustainable yield and conserving vulnerable populations.
机译:保护动物种群的遗传多样性对于维持其对环境变化的反应能力至关重要。然而,遗传多样性(生物复杂性)的“种群间”组成部分在许多被剥削的种群中受到威胁,特别是海水鱼类,其收获管理区可能大于遗传上不同的亚种群的空间范围。使用单核苷酸多态性(SNP)数据,我们划定了欧洲西北海域大西洋鳕(Gadus morhua)的三个种群单位的地理范围。其中两个人口共同居住在北海,拖网调查数据显示其丰度有不同的趋势。我们开发了这些单元的空间模型,以模拟收获空间模式下的种群动态,该模型在中上层幼体阶段的单元之间的竞争导致了分布更广的北多北海(Viking)单元的抑制(Dogger)单元,以及在某些空间捕捞模式下其过早灭绝。鳕鱼的渔业捕捞限额是在整个北海范围内设定的,而不考虑此类种群的动态。我们的模型提供了一种方法,可以量化对区域捕捞死亡率的调整,以在实现可持续产量最大化和保护弱势群体之间取得平衡。

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