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首页> 外文期刊>ICES Journal of Marine Science >The challenges of detecting and attributing ocean acidification impacts on marine ecosystems
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The challenges of detecting and attributing ocean acidification impacts on marine ecosystems

机译:探测和归因于海洋生态系统的海洋酸化影响的挑战

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A substantial body of research now exists demonstrating sensitivities of marine organisms to ocean acidification (OA) in laboratory settings. However, corresponding in situ observations of marine species or ecosystem changes that can be unequivocally attributed to anthropogenic OA are limited. Challenges remain in detecting and attributing OA effects in nature, in part because multiple environmental changes are co-occurring with OA, all of which have the potential to influence marine ecosystem responses. Furthermore, the change in ocean pH since the industrial revolution is small relative to the natural variability within many systems, making it difficult to detect, and in some cases, has yet to cross physiological thresholds. The small number of studies that clearly document OA impacts in nature cannot be interpreted as a lack of larger-scale attributable impacts at the present time or in the future but highlights the need for innovative research approaches and analyses. We summarize the general findings in four relatively well-studied marine groups (seagrasses, pteropods, oysters, and coral reefs) and integrate overarching themes to highlight the challenges involved in detecting and attributing the effects of OA in natural environments. We then discuss four potential strategies to better evaluate and attribute OA impacts on species and ecosystems. First, we highlight the need for work quantifying the anthropogenic input of CO2 in coastal and open-ocean waters to understand how this increase in CO2 interacts with other physical and chemical factors to drive organismal conditions. Second, understanding OA-induced changes in population-level demography, potentially increased sensitivities in certain life stages, and how these effects scale to ecosystem-level processes (e.g. community metabolism) will improve our ability to attribute impacts to OA among co-varying parameters. Third, there is a great need to understand the potential modulation of OA impacts through the interplay of ecology and evolution (eco-evo dynamics). Lastly, further research efforts designed to detect, quantify, and project the effects of OA on marine organisms and ecosystems utilizing a comparative approach with long-term data sets will also provide critical information for informing the management of marine ecosystems.
机译:现在存在大量研究,现有实验室环境中海洋酸化(OA)对海洋生物的敏感性。然而,对应于原位观察的海洋物种或生态系统变化,其可以明确归因于人为OA的限制。挑战仍在检测和归因于自然界的OA效应,部分原因是与OA共同发生的,所有这些环境变化都有可能影响海洋生态系统反应。此外,海洋pH的变化由于工业革命与许多系统内的自然变异很小,因此难以检测,并且在某些情况下尚未交叉生理阈值。清楚地记录自然界的少数研究不能被解释为目前或将来缺乏大规模的归因影响,但突出了对创新研究方法和分析的需求。我们总结了四个相对良好的海洋群体(海草,Pteropods,牡蛎和珊瑚礁)的一般调查结果,并整合了总体主题,以强调检测和归因于OA在自然环境中的影响所涉及的挑战。然后,我们讨论了四种潜在的策略,以更好地评估和归因于物种和生态系统的影响。首先,我们强调了对沿海和开放海域的二氧化碳的人为投入量化的工作,以了解CO2的增加如何与其他物理和化学因素相互作用以驱动有机体状况。其次,了解人口级别人口统计的变化,潜在地增加了某些寿命中的敏感性,以及这些影响如何扩大到生态系统级进程(例如社区新陈代谢)将如何提高我们在共聚参数中对OA的影响的能力提高。第三,通过生态学和演化的相互作用,有很大的需要了解OA影响的潜在调制(Eco-Evo动态)。最后,旨在检测,量化和项目利用长期数据集的比较方法对海洋生物和生态系统效果的进一步研究努力也将提供关于通知海洋生态系统管理的关键信息。

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