GEOMAR Helmholtz Centre for Ocean Research Kiel, Kiel, Germany.
Department of Economics, Christian-Albrechts-Universität, Kiel, Germany.
Nat Ecol Evol. 2018 May;2(5):836-840. doi: 10.1038/s41559-018-0514-6. Epub 2018 Mar 19.
Ocean acidification-the decrease in seawater pH due to rising CO concentrations-has been shown to lower survival in early life stages of fish and, as a consequence, the recruitment of populations including commercially important species. To date, ocean-acidification studies with fish larvae have focused on the direct physiological impacts of elevated CO, but largely ignored the potential effects of ocean acidification on food web interactions. In an in situ mesocosm study on Atlantic herring (Clupea harengus) larvae as top predators in a pelagic food web, we account for indirect CO effects on larval survival mediated by changes in food availability. The community was exposed to projected end-of-the-century CO conditions (~760 µatm pCO) over a period of 113 days. In contrast with laboratory studies that reported a decrease in fish survival, the survival of the herring larvae in situ was significantly enhanced by 19 ± 2%. Analysis of the plankton community dynamics suggested that the herring larvae benefitted from a CO-stimulated increase in primary production. Such indirect effects may counteract the possible direct negative effects of ocean acidification on the survival of fish early life stages. These findings emphasize the need to assess the food web effects of ocean acidification on fish larvae before we can predict even the sign of change in fish recruitment in a high-CO ocean.
海洋酸化——由于二氧化碳浓度上升导致海水 pH 值降低——已被证明会降低鱼类早期生命阶段的存活率,从而影响包括商业上重要物种在内的种群的补充。迄今为止,对鱼类幼体的海洋酸化研究主要集中在升高的二氧化碳对直接生理影响上,但在很大程度上忽略了海洋酸化对食物网相互作用的潜在影响。在一项关于大西洋鲱(Clupea harengus)幼鱼作为浮游食物网中顶级捕食者的现场中观培养实验研究中,我们研究了由于食物供应变化而导致的间接 CO 对幼鱼存活率的影响。该群落暴露于预计本世纪末的 CO 条件(~760 μatm pCO)下 113 天。与报告鱼类存活率下降的实验室研究相反,鲱鱼幼鱼在现场的存活率显著提高了 19±2%。对浮游群落动态的分析表明,鲱鱼幼鱼受益于 CO 刺激的初级生产力增加。这种间接影响可能抵消海洋酸化对鱼类早期生命阶段生存的可能直接负面影响。这些发现强调,在我们能够预测高 CO 海洋中鱼类补充的变化趋势之前,需要评估海洋酸化对鱼类幼体的食物网影响。