Flow regulation by dams impacts more than land use on water quality and benthic communities in high-gradient streams in a semi-arid region.

Sci Total Environ

Centro de Investigación de Montaña y Estepa Patagónica (CIEMEP-CONICET-FCNyCS), Universidad Nacional de la Patagonia San Juan Bosco, Esquel, Chubut, Argentina. Electronic address:

Published: July 2023

AI Article Synopsis

  • Water policy in semi-arid regions has often prioritized reservoir construction without evaluating the ecological impacts on local ecosystems, particularly in high-gradient streams of the Dry Chaco Ecoregion in South America.
  • Research studied both unregulated and regulated watercourses, revealing significant increases in water contaminants and detrimental effects on habitat conditions and macroinvertebrate communities in regulated areas.
  • Findings suggest that improving ecological integrity in regulated streams requires habitat restoration, emphasizing the need for better management of water resources amid changing climate conditions.

Article Abstract

In semi-arid regions, water policy has strongly promoted the construction of water reservoirs with little or no consideration for their ecological consequences. In order to quantify the effect induced by flow discontinuity on environmental conditions, water quality, and invertebrate communities at high-gradient streams, we investigated unregulated and regulated reaches at 13 watercourses, located in the Dry Chaco Ecoregion (South America). Dams differed in the dominant land uses (rangeland, agriculture, and urban) of the related catchment area. We assessed on-site hydro-geomorphic features, water quality and bacteriological parameters, habitat condition, chlorophyll a, macrophytes cover, and macroinvertebrate communities. Significant increases in mineral parameters and organic contamination indicators were detected at regulated reaches, such as: conductivity, total solids, turbidity, color, and phosphates. Dams negatively affected habitat condition, and macrophyte cover increased at regulated sites. Macroinvertebrates showed a diminution in most of the metrics analyzed, with a decrease of sensitive groups and an increase in the more tolerant ones. Redundancy Analysis revealed that SWQI (physicochemical based index) and the proportion of coarse gravel were stronger predictors on metrics arrangement. Variance partitioning analyses proved that regulation effects prevailed over land use in explaining metrics variation. Invertebrate community was positively related to better ecological conditions, which suggests that restitution of ecological integrity at regulated reaches should include habitat restoration. These results are relevant for the management of regulated water resources in arid and semi-arid regions in a context of climate change.

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Source
http://dx.doi.org/10.1016/j.scitotenv.2023.163468DOI Listing

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