4.8 Article

Heat waves rather than continuous warming exacerbate impacts of nutrient loading and herbicides on aquatic ecosystems

期刊

ENVIRONMENT INTERNATIONAL
卷 168, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.envint.2022.107478

关键词

Climate change; Eutrophication; Macrophyte; Multiple stressors; Periphyton; Phytoplankton

资金

  1. National Key R&D Program of China [2018YFD0900904]
  2. National Natural Science Founda-tions of China [32001158, 31872687]
  3. Fundamental Research Funds for the Central Universities [2662022SCYJ004]
  4. China Postdoctoral Science Foundation [2019M652734]
  5. International Cooperation Project of theChinese Academy of Sciences [152342KYSB20190025]

向作者/读者索取更多资源

This study investigates the interactive effects of multiple stressors, including increasing temperatures, nutrient loading, and herbicides, on the growth of submerged macrophytes and other primary producers in shallow lakes. The results demonstrate that the joint impact of these stressors can alter the biomass of primary producers and their interactions, leading to a decline in macrophyte communities and a shift towards phytoplankton dominance.
Submerged macrophytes are vital components in shallow aquatic ecosystems, but their abundances have declined globally. Shading by periphyton and phytoplankton/turbidity plays a major role in this decline, and the competing aquatic primary producers are subject to the complex influence of multiple stressors such as increasing temperatures, nutrient loading and herbicides. Their joint impact has rarely been tested and is difficult to predict due to potentially opposing effects on the different primary producers, their interactions and their grazers. Here, we used 48 mesocosms (2500 L) to simulate shallow lakes dominated by two typical submerged macrophytes, bottom-dwelling Vallisneria denseserrulata and canopy-forming Hydrilla verticillata, and associated food web components. We applied a combination of nutrient loading, continuous warming, heat waves and glyphosate-based herbicides to test how these stressors interactively impact the growth of submerged macrophytes, phytoplankton and periphyton as competing primary producers. Warming or heat waves alone did not affect phytoplankton and periphyton abundance, but negatively influenced the biomass of V. denseserrulata. Nutrient loading alone increased phytoplankton biomass and water turbidity and thus negatively affected submerged macrophyte biomass, particularly for V. denseserrulata, by shading. Glyphosate alone did not affect biomass of each primary producer under ambient temperatures. However, heat waves facilitated phytoplankton growth under combined nutrient loading and glyphosate treatments more than continuous warming. As a consequence, H. yerticillata biomass was lowest under these conditions indicating the potential of multiple stressors for macrophyte decline. Our study demonstrated that multiple stressors interactively alter the biomass of primary producers and their interactions and can eventually lead to a loss of macrophyte communities and shift to phytoplankton dominance. These results show the risks in shallow lakes and ponds in agricultural landscapes and underline the need for multiple stressor studies as a base for their future management.

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