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Publication Additional Information
Publication Type
Journal Article
Authorship
Gushulak, C. A. C., Chegoonian, A. M., Wolfe, J., Gray, K., Mezzini, S., Wissel, B., Hann, B., Baulch, H. M., Finlay, K., Leavitt, P. R.
Title
Impacts of hydrologic management on the eutrophication of shallow lakes in an intensive agricultural landscape (Saskatchewan, Canada)
Year
2024
Publication Outlet
Freshwater Biology, 69, 984–1000
DOI
https://doi.org/10.1111/fwb.14260
Citation
Gushulak, C. A. C., Chegoonian, A. M., Wolfe, J., Gray, K., Mezzini, S., Wissel, B., Hann, B., Baulch, H. M., Finlay, K., Leavitt, P. R. (2024) Impacts of hydrologic management on the eutrophication of shallow lakes in an intensive agricultural landscape (Saskatchewan, Canada), Freshwater Biology, 69, 984–1000
Abstract
1. Hydrologic management of shallow lakes is often undertaken to prevent fluctua- tions in lake level, and to ensure sufficient water volume for economic, domestic, and recreational uses, but there is inconsistent evidence of whether lake-level sta- bilisation through hydrological management promotes or hinders eutrophication. 2. Here we used multi-proxy paleolimnological assessments of water quality (sedi- mentary carbon, nitrogen, total phosphorus, fossil pigments), and zooplankton community ecology (fossil Cladocera assemblages), combined with Landsat- derived estimates of lake surface area in two shallow eutrophic lakes, in the Prairies of southern Saskatchewan, Canada, to quantify how 8 decades of con- trasting hydrological management strategies (continuous or intermittent) affect primary production and phytoplankton composition. 3. Analysis revealed that irregular hydrological management of Pelican Lake led to sharp increases in primary production concomitant with lake-level decline. In contrast, continuously managed Buffalo Pound Lake, a drinking water reservoir for regional cities, exhibited slow, persistent eutrophication over decades despite active regulation of water levels. In both lakes, strong correlations of ? 15N val- ues with pigments from diazotrophic cyanobacteria (canthaxanthin) showed that N2-fixation increased during eutrophication irrespective of the timing of change. Finally, variation in fossil cladoceran density and composition reflected changes in pelagic and littoral habitats (e.g., reduced macrophyte cover) due to changes in both lake level and water quality. 4. Basin comparison shows that while hydrologic management can moderate water quality degradation due to lake-level change, it does not prevent eutrophication when nutrient influx remains high.
Program Affiliations
GWF: Global Water Futures
Publication Stage
Published
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