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热浪和微污染物对淡水生态系统的综合影响:迈向多压力因素研究中极端事件的综合评估。

Combined effects of heatwaves and micropollutants on freshwater ecosystems: Towards an integrated assessment of extreme events in multiple stressors research.

机构信息

IMDEA Water Institute, Science and Technology Campus of the University of Alcalá, Alcalá de Henares, Spain.

Department of Environmental Science, Stockholm University, Stockholm, Sweden.

出版信息

Glob Chang Biol. 2022 Feb;28(4):1248-1267. doi: 10.1111/gcb.15971. Epub 2021 Nov 16.

Abstract

Freshwater ecosystems are strongly influenced by weather extremes such as heatwaves (HWs), which are predicted to increase in frequency and magnitude in the future. In addition to these climate extremes, the freshwater realm is impacted by the exposure to various classes of chemicals emitted by anthropogenic activities. Currently, there is limited knowledge on how the combined exposure to HWs and chemicals affects the structure and functioning of freshwater ecosystems. Here, we review the available literature describing the single and combined effects of HWs and chemicals on different levels of biological organization, to obtain a holistic view of their potential interactive effects. We only found a few studies (13 out of the 61 studies included in this review) that investigated the biological effects of HWs in combination with chemical pollution. The reported interactive effects of HWs and chemicals varied largely not only within the different trophic levels but also depending on the studied endpoints for populations or individuals. Hence, owing also to the little number of studies available, no consistent interactive effects could be highlighted at any level of biological organization. Moreover, we found an imbalance towards single species and population experiments, with only five studies using a multitrophic approach. This results in a knowledge gap for relevant community and ecosystem level endpoints, which prevents the exploration of important indirect effects that can compromise food web stability. Moreover, this knowledge gap impairs the validity of chemical risk assessments and our ability to protect ecosystems. Finally, we highlight the urgency of integrating extreme events into multiple stressors studies and provide specific recommendations to guide further experimental research in this regard.

摘要

淡水生态系统受极端天气的强烈影响,如热浪(HWs),预计未来其频率和强度将会增加。除了这些气候极端事件外,淡水领域还受到人为活动排放的各种类别的化学物质的暴露的影响。目前,对于HWs 和化学物质的联合暴露如何影响淡水生态系统的结构和功能,我们的了解有限。在这里,我们回顾了现有的文献,描述了 HWs 和化学物质对不同层次的生物组织的单一和联合影响,以全面了解它们可能的相互作用。我们只发现了少数研究(本综述中包含的 61 项研究中有 13 项)调查了 HWs 与化学污染结合对生物的影响。报道的 HWs 和化学物质的相互作用差异很大,不仅在不同的营养水平内如此,而且取决于研究种群或个体的终点。因此,也由于可用的研究数量很少,在任何生物组织层次上都无法突出一致的相互作用。此外,我们发现单一物种和种群实验的不平衡,只有五项研究采用了多营养级方法。这导致了相关群落和生态系统水平终点的知识差距,从而阻止了对可能破坏食物网稳定性的重要间接影响的探索。此外,这一知识差距损害了化学风险评估的有效性和我们保护生态系统的能力。最后,我们强调了将极端事件纳入多胁迫研究的紧迫性,并提供了具体建议,以指导这方面的进一步实验研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/536b/9298819/638b4aa080d7/GCB-28-1248-g007.jpg

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