【2h】

Changing recruitment capacity in global fish stocks

机译:全球鱼类种群的招聘能力不断变化

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摘要

Marine fish and invertebrates are shifting their regional and global distributions in response to climate change, but it is unclear whether their productivity is being affected as well. Here we tested for time-varying trends in biological productivity parameters across 262 fish stocks of 127 species in 39 large marine ecosystems and high-seas areas (hereafter LMEs). This global meta-analysis revealed widespread changes in the relationship between spawning stock size and the production of juvenile offspring (recruitment), suggesting fundamental biological change in fish stock productivity at early life stages. Across regions, we estimate that average recruitment capacity has declined at a rate approximately equal to 3% of the historical maximum per decade. However, we observed large variability among stocks and regions; for example, highly negative trends in the North Atlantic contrast with more neutral patterns in the North Pacific. The extent of biological change in each LME was significantly related to observed changes in phytoplankton chlorophyll concentration and the intensity of historical overfishing in that ecosystem. We conclude that both environmental changes and chronic overfishing have already affected the productive capacity of many stocks at the recruitment stage of the life cycle. These results provide a baseline for ecosystem-based fisheries management and may help adjust expectations for future food production from the oceans.
机译:海水鱼类和无脊椎动物正在响应气候变化而改变其区域和全球分布,但尚不清楚它们的生产力是否也受到影响。在这里,我们测试了39个大型海洋生态系统和公海地区(以下称LME)中127种262种鱼类的生物生产力参数的时变趋势。这项全球荟萃分析揭示了产卵种群规模与幼仔后代产量(征募)之间关系的广泛变化,表明鱼类早期生命阶段生产力的根本生物学变化。在各个地区,我们估计平均招聘能力下降的速度大约等于每十年历史最高水平的3%。但是,我们发现存量和地区之间存在很大的差异;例如,北大西洋的高度消极趋势与北太平洋的中性格局形成鲜明对比。每个LME中生物变化的程度与所观察到的浮游植物叶绿素浓度变化以及该生态系统中历史过度捕捞的强度显着相关。我们得出结论,在生命周期的征募阶段,环境变化和长期过度捕捞已经影响了许多种群的生产能力。这些结果为基于生态系统的渔业管理提供了基线,并可能有助于调整对海洋未来粮食生产的期望。

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