Effects of water scarcity and chemical pollution in aquatic ecosystems: State of the art

Sci Total Environ. 2016 Dec 1:572:390-403. doi: 10.1016/j.scitotenv.2016.07.211. Epub 2016 Aug 9.

Abstract

Water scarcity is an expanding climate and human related condition, which drives and interacts with other stressors in freshwater ecosystems such as chemical pollution. In this study we provide an overview of the existing knowledge regarding the chemical fate, biological dynamics and the ecological risks of chemicals under water scarcity conditions. We evaluated a total of 15 studies dealing with the combined effects of chemicals and water scarcity under laboratory conditions and in the field. The results of these studies have been elaborated in order to evaluate additive, synergistic or antagonistic responses of the studied endpoints. As a general rule, it can be concluded that, in situations of water scarcity, the impacts of extreme water fluctuations are much more relevant than those of an additional chemical stressor. Nevertheless, the presence of chemical pollution may result in exacerbated ecological risks in some particular cases. We conclude that further investigations on this topic would take advantage on the focus on some specific issues. Experimental (laboratory and model ecosystem) studies should be performed on different biota groups and life stages (diapausing eggs, immature stages), with particular attention to those including traits relevant for the adaptation to water scarcity. More knowledge on species adaptations and recovery capacity is essential to predict community responses to multiple stressors and to assess the community vulnerability. Field studies should be performed at different scales, particularly in lotic systems, in order to integrate different functional dynamics of the river ecosystem. Combining field monitoring and experimental studies would be the best option to reach more conclusive, causal relationships on the effects of co-occurring stressors. Contribution of these studies to develop ecological models and scenarios is also suggested as an improvement for the prospective aquatic risk assessment of chemicals in (semi-)arid areas.

Keywords: Aquatic communities; Contaminants; Ecotoxicology; Multiple stressors; Temporary rivers.

Publication types

  • Review

MeSH terms

  • Aquatic Organisms / drug effects*
  • Biota / drug effects
  • Droughts*
  • Risk Assessment
  • Water Pollutants, Chemical / adverse effects*
  • Water Pollution, Chemical / adverse effects*

Substances

  • Water Pollutants, Chemical