bioRxiv · 10.1101/2020.11.25.397554
Grandmother's chemical legacy of pesticide exposure: bi-generational effects and acclimation in a model invertebrate
Abstract
Man-made chemicals are a significant contributor to the ongoing deterioration of ecosystems. Currently, risk assessment of these chemicals is based on observations in a single generation of animals, despite potential adverse intergenerational effects. Here, we investigate the effect of the fungicide prochloraz across three generations of Daphnia magna. We studied both the effects of continuous exposure over all generations and the effects of first-generation (F0) exposure on two subsequent, non-exposed, generations. Effects at different levels of biological organization were monitored. Acclimation to prochloraz was found after continuous exposure. Following F0-exposure, non-exposed F1-offspring showed no significant effects. However, in the F2 animals, several parameters differed significantly from controls. A direct association between grandmaternal effects and toxic mode of action of prochloraz was found, showing that chemicals can be harmful not only to the exposed generation, but also to subsequent generations and that effects may even skip a generation.
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Poulsen, R., De Fine Licht, H. H., Hansen, M., Cedergreen, N.. 2020-11-25. Grandmother's chemical legacy of pesticide exposure: bi-generational effects and acclimation in a model invertebrate. https://doi.org/10.1101/2020.11.25.397554
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