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Transgenerational effects and recovery of microplastics exposure in model populations of the freshwater cladoceran Daphnia magna Straus

The Science of The Total Environment 2018 228 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Alexandra Martins, Lúcia Guilhermino Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Alexandra Martins, Lúcia Guilhermino Alexandra Martins, Alexandra Martins, Alexandra Martins, Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino Lúcia Guilhermino

Summary

Researchers tracked the effects of microplastic exposure across four generations of Daphnia magna and found that reproductive impairment and growth reductions persisted into offspring generations that were never directly exposed. The study suggests that microplastics can cause transgenerational effects in freshwater organisms, though partial recovery was observed when exposure ceased.

Body Systems
Study Type Environmental

The environmental contamination by microplastics is a global challenge to ecosystem and human health, and the knowledge on the long-term effects of such particles is limited. Thus, the effects of microplastics and post-exposure recovery were investigated over 4 generations (F<sub>0</sub>, F<sub>1</sub>, F<sub>2</sub>, F<sub>3</sub>) using Daphnia magna as model. Effect criteria were parental mortality, growth, several reproductive parameters, and population growth rate. Microplastics exposure (0.1mg/l of pristine polymer microspheres 1-5μm diameter) caused parental mortality (10-100%), and significantly (p≤0.05) decreased growth, reproduction, and population growth rate leading to the extinction of the microplastics-exposed model population in the F<sub>1</sub> generation. Females descending from those exposed to microplastics in F<sub>0</sub> and exposed to clean medium presented some recovery but up to the F<sub>3</sub> generation they still had significantly (p≤0.05) reduced growth, reproduction, and population growth rate. Overall, these results indicate that D. magna recovery from chronic exposure to microplastics may take several generations, and that the continuous exposure over generations to microplastics may cause population extinction. These findings have implications to aquatic ecosystem functioning and services, and raise concern on the long-term animal and human exposure to microplastics through diverse routes.

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