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Climate, plankton and cod

机译:气候,浮游生物和鳕鱼

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While a few North Atlantic cod stocks are stable, none have increased and many have declined in recent years. Although overfishing is the main cause of most observed declines, this study shows that in some regions, climate by its influence on plankton may exert a strong control on cod stocks, complicating the management of this species that often assumes a constant carrying capacity. First, we investigate the likely drivers of changes in the cod stock in the North Sea by evaluating the potential relationships between climate, plankton and cod. We do this by deriving a Plankton Index that reflects the quality and quantity of plankton food available for larval cod. We show that this Plankton Index explains 46.24% of the total variance in cod recruitment and 68.89% of the variance in total cod biomass. Because the effects of climate act predominantly through plankton during the larval stage of cod development, our results indicate a pronounced sensitivity of cod stocks to climate at the warmer, southern edge of their distribution, for example in the North Sea. Our analyses also reveal for the first time, that at a large basin scale, the abundance of Calanus finmarchicus is associated with a high probability of cod occurrence, whereas the genus Pseudocalanus appears less important. Ecosystem-based fisheries management (EBFM) generally considers the effect of fishing on the ecosystem and not the effect of climate-induced changes in the ecosystem state for the living resources. These results suggest that EBFM must consider the position of a stock within its ecological niche, the direct effects of climate and the influence of climate on the trophodynamics of the ecosystem.
机译:尽管少数北大西洋鳕鱼存量稳定,但近几年没有增加,许多却减少了。尽管过度捕捞是造成大多数下降的主要原因,但这项研究表明,在某些地区,气候对浮游生物的影响可能会对鳕鱼种群产生强大的控制作用,使该物种的管理变得复杂化,而该物种通常具有恒定的承载能力。首先,我们通过评估气候,浮游生物和鳕鱼之间的潜在关系,调查北海鳕鱼种群变化的可能驱动因素。为此,我们得出了浮游生物指数,该指数反映了可用于幼体鳕鱼的浮游生物食物的质量和数量。我们表明,该浮游生物指数解释了鳕鱼募集的总方差的46.24%和鳕鱼总生物量的方差的68.89%。因为在鳕鱼发育的幼体阶段,气候影响主要通过浮游生物起作用,所以我们的结果表明,鳕鱼种群在分布较暖的南部边缘(例如在北海)对气候具有明显的敏感性。我们的分析还首次揭示,在较大的流域规模上,芬密的Calanus finmarchicus的出现与鳕鱼发生的可能性较高相关,而Pseudocalanus属的重要性似乎较低。基于生态系统的渔业管理(EBFM)通常考虑捕捞对生态系统的影响,而不是气候对生物资源造成的生态系统状态变化的影响。这些结果表明,EBFM必须考虑种群在其生态位内的位置,气候的直接影响以及气候对生态系统营养动力学的影响。

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