Related Experiment Video
Updated: Jul 11, 2026

Vegetated Treatment Systems for Removing Contaminants Associated with Surface Water Toxicity in Agriculture and Urban Runoff
Published on: May 15, 2017
Pesticide pollution and its impact on biota: Contrasting shrimp-based biomonitoring results between headwater and
Carlos Leandro Negro1, María Florencia Viozzi2, Fernando Gastón Iturburu3
1Instituto Nacional de Limnología (CONICET-UNL), Ciudad Universitaria, Paraje El Pozo s/n, 3000, Santa Fe, Argentina; Escuela Superior de Sanidad, Facultad de Bioquímica y Ciencias Biológicas (UNL), Ciudad Universitaria, Paraje El Pozo s/n, 3000, Santa Fe, Argentina.
Abstract:
The Pampean region is characterized by a flat land area with gentle slopes and extensive agricultural land use. Streams and rivers associated with agricultural catchments are usually affected by pesticides that are used on crops and drift into aquatic environments. As streams converge into larger rivers, their water quality may undergo significant changes, particularly in terms of pesticide concentrations. Ten different sites along lowland stream were studied, from the headwaters to the mouth near the Middle Paraná river. Five physicochemical parameters and pesticide concentrations (135 compounds including glyphosate and its metabolite AMPA) in the water were measured. Additionally, Macrobrachium borellii shrimp were exposed for 7 day at each site in a field cage design. After exposure, five enzymatic and non-enzymatic parameters related to oxidative stress were measured in the hepatopancreas and seven in the muscle. At 2 first-order streams and 1 s-order stream the environmental conditions were sufficiently stressful to induce 100 % mortality in exposed individuals. Among surviving shrimp, oxidative stress biomarkers were predominantly elevated in headwaters and 1 s order stream. Significant positive correlations were detected between specific pesticide concentrations and certain biomarkers. Multivariate GLM analysis revealed that atrazine concentrations significantly explained variations in catalase and superoxide dismutase activities in muscle tissue. However, the most pronounced shifts in oxidative stress parameters occurred at sites where physicochemical variables (e.g., dissolved oxygen, pH) were stronger predictors than pesticide levels, with no clear dose-response relationship observed for pesticides alone. These findings underscore that first and second order streams related with headwaters represent the most ecologically stressful aquatic environments in the studied system, warranting targeted conservation efforts and further research to elucidate underlying mechanisms.
More Related Videos
16:02Demonstration of the Sequence Alignment to Predict Across Species Susceptibility Tool for Rapid Assessment of Protein Conservation
Published on: February 10, 2023
08:14Ecotoxicological Methodologies to Evaluate Biomarkers at Different Scales in Neotropical Anurans
Published on: April 28, 2023