0
Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Sign in to save

Microplastic exposure alters immune-related gene expression in Culex quinquefasciatus mosquitoes and larval microbiota diversity

bioRxiv (Cold Spring Harbor Laboratory) 2026
Ahamed Tchatakoura, Marie Buysse, Marie-Laure Setier Rio, Olivier Roux, Claire Loiseau, Amandine Avilès

Summary

Tiny plastic particles found in water where mosquitoes grow up can weaken the insects' immune system, which might make them better at spreading diseases to humans. Scientists exposed mosquito larvae to different amounts of microplastics and found that even after the mosquitoes became adults, their immune genes were still affected and less able to fight off infections. This matters because if microplastics help mosquitoes survive pathogens better, it could increase disease transmission to people, so we need to understand this pollution's full impact on disease-carrying insects.

Polymers
Body Systems
Study Type Environmental

Background: Microplastics have been detected in many freshwater ecosystems, including stagnant waters where mosquito larvae develop. Larvae are therefore exposed to microplastic pollution, which may affect their life history traits or microbiota along with immune gene expression. However, these effects have never been tested in mosquitoes, despite their major public health importance as vectors of numerous pathogens. Method: We exposed mosquito larvae, from hatching to adult emergence, to four concentrations of polyethylene microplastics (MPs): 0, 60, 200, and 600 MPs/mL. Fourth-instar larvae and newly emerged adult females were collected for each treatment. To investigate the effects of MPs on gene expression and bacterial microbiota, RNA sequencing and 16S metabarcoding approaches were performed on three biological replicates for each developmental stage. Results: Microplastic exposure induced a non-monotonic dose-dependent transcriptomic response. In larvae, only a limited number of genes were differentially expressed (five to eight per concentration), with immune-related genes downregulated at both low and high concentrations. In adult females, the intermediate concentration (200 MPs/mL) elicited the strongest response with 14 differentially expressed genes (DEGs). Regarding the microbiota, microplastic exposure reduced bacterial diversity in larvae, with the lowest diversity observed at the highest concentration. However, no significant changes were detected in the microbiota of adult females. Conclusion: Overall, this study shows that adult females are affected by larval exposure to MPs (i.e. differential expression in immune-related genes) and warrants further studies in this field. This includes: 1) investigating further the effects of MPs on mosquitoes' populations (e.g. through multi-generational studies), 2) gaining more environmentally relevant knowledge on MP effects (i.e. using MPs with a biofilm and/or adsorbed pollutants) and 3) focusing on the effects of MPs on mosquitoes' vectorial capacities.

Share this paper