Red Sea Research Center (RSRC) and Computational Bioscience Research Center (CBRC), King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.
Glob Chang Biol. 2020 Oct;26(10):5602-5612. doi: 10.1111/gcb.15252. Epub 2020 Jul 22.
Deoxygenation in coastal and open-ocean ecosystems rarely exists in isolation but occurs concomitantly with acidification. Here, we first combine meta-data of experimental assessments from across the globe to investigate the potential interactive impacts of deoxygenation and acidification on a broad range of marine taxa. We then characterize the differing degrees of deoxygenation and acidification tested in our dataset using a ratio between the partial pressure of oxygen and carbon dioxide (pO /pCO ) to assess how biological processes change under an extensive, yet diverse range of pO and pCO conditions. The dataset comprised 375 experimental comparisons and revealed predominantly additive but variable effects (91.7%, additive; 6.0%, synergistic; and 2.3%, antagonistic) of the dual stressors, yielding negative impacts across almost all responses examined. Our data indicate that the pO /pCO -ratio offers a simplified metric to characterize the extremity of the concurrent stressors and shows that more severe impacts occurred when ratios represented more extreme deoxygenation and acidification conditions. Importantly, our analysis highlights the need to assess the concurrent impacts of deoxygenation and acidification on marine taxa and that assessments considering the impact of O depletion alone will likely underestimate the impacts of deoxygenation events and their ecosystem-wide consequences.
在沿海和开阔海域生态系统中,脱氧很少是孤立存在的,而是与酸化同时发生。在这里,我们首先结合了全球范围内的实验评估元数据,研究了脱氧和酸化对广泛的海洋分类群的潜在交互影响。然后,我们使用氧气和二氧化碳分压之间的比值(pO / pCO )来描述我们数据集中测试的不同程度的脱氧和酸化,以评估在广泛但多样化的 pO 和 pCO 条件下生物过程如何变化。该数据集包括 375 个实验比较,结果表明这两个胁迫因素主要表现出相加但可变的效应(91.7%,相加;6.0%,协同;2.3%,拮抗),几乎所有受测的反应都受到负面影响。我们的数据表明,pO / pCO 比值提供了一个简化的指标来描述同时存在的胁迫因素的极端程度,并且表明当比值代表更极端的脱氧和酸化条件时,会发生更严重的影响。重要的是,我们的分析强调了需要评估脱氧和酸化对海洋分类群的并发影响,并且仅考虑 O 消耗影响的评估可能会低估脱氧事件及其对生态系统的影响。