Sub-lethal toxicity of environmentally relevant concentrations of esfenvalerate to Chironomus riparius

Integrative studies focused on sub-organismal responses to pyrethroid exposure are important to understand life history responses. In this study, the ecotoxicological effects of esfenvalerate (ESF) on Chironomus riparius were assessed using five biochemical biomarkers related to neurophysiological f...

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Veröffentlicht in:Environmental pollution (1987) 2015-12, Vol.207, p.273-279
Hauptverfasser: Rodrigues, Andreia C.M., Gravato, Carlos, Quintaneiro, Carla, Barata, Carlos, Soares, Amadeu M.V.M., Pestana, João L.T.
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Sprache:eng
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Zusammenfassung:Integrative studies focused on sub-organismal responses to pyrethroid exposure are important to understand life history responses. In this study, the ecotoxicological effects of esfenvalerate (ESF) on Chironomus riparius were assessed using five biochemical biomarkers related to neurophysiological function (acetylcholinesterase) and oxidative stress (catalase; glutathione-S-transferase; total glutathione and lipid peroxidation). In addition, effects on cellular energy allocation were assessed and all results were compared with organismal level responses (larval growth, emergence and sex ratio). Exposure to sub-lethal concentrations of ESF caused the failure of C. riparius antioxidant defenses (inhibition of catalase activity and decreased levels of total glutathione), which was reflected as oxidative damage. C. riparius energy budget was decreased by exposure to ESF due to an increased energy consumption. Life cycle tests showed that exposure to ESF impaired C. riparius developmental rates and increased male:female ratios, thereby confirming its toxicity and potential population level effects at environmentally relevant concentrations. •Environmental relevant concentrations of esfenvalerate are toxic to chironomids.•Esfenvalerate caused oxidative damage and increase cellular expenditure.•Chironomus life history traits were impaired by esfenvalerate exposure. Exposure to relevant concentrations of Esfenvalerate induces oxidative stress, alters cellular energy allocation and reduces development rates of Chironomus riparius.
ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2015.09.035