From urban runoff to mosquito success : spatiotemporal microbial assembly in larval water habitats under anthropogenic stressors
Gentil, A.; Martin, E.; Vallon, L.; Tsirikhova, I.; Gervaix, J.; Fildier, A.; Wiest, L.; Vulliet, E.; Cantarel, A.; Cazabet, R.; Luis, P.; Valiente Moro, C.
Show abstract
Urban mosquito habitats are heterogeneous aquatic ecosystems where anthropogenic inputs shape physicochemical conditions and microbial community assembly. However, the combined effects of environmental chemistry and microbial dynamics on mosquito fitness remain poorly understood across space and time. Here, we integrated environmental chemistry, metabarcoding, and experimental assays to investigate how spatiotemporal variation in urban larval habitats influences environmental microbial assembly and the biology of the Asian tiger mosquito, Aedes albopictus. Six stormwater drains were monitored over five months to characterize ions, dissolved gases, micropollutants, and bacterial and fungal communities. Laboratory assays using water from three contrasting habitats were then conducted to evaluate oviposition preference and mosquito performance. Microbial community composition was strongly structured by breeding-site identity and associated with distinct physicochemical signatures. Bacterial communities remained relatively stable over time, whereas fungal assemblages exhibited stronger temporal turnover. These environmental differences translated into marked variation in larval performance, ranging from rapid development and high survival to delayed development, reduced survival, and episodic cohort collapse under environmentally unstable conditions. Adult traits further revealed carry-over effects of larval environment exposure across life stages. Correlation analyses showed that mosquito fitness was associated with both abiotic variables and microbial taxa linked to larval survival, development, emergence, and adult longevity. In contrast, oviposition preference remained consistently high across habitats despite strong differences in offspring performance, indicating a decoupling between habitat attractiveness and suitability. Overall, our results demonstrate that anthropogenic stressors shape microbial assembly in urban larval habitats, with cascading consequences for mosquito fitness and population dynamics.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Sediment source and dose influence the larval performance of the threatened coral Orbicella faveolata 94%
- Combined impact of pesticides and other environmental stressors on taxonomic richness of freshwater animals in irrigation ponds 93%
- Phenotypic and transcriptional response of Daphnia pulicaria to the combined effects of temperature and predation 93%
Similar papers in this journal
Similar papers in this journal
- The hemolymph of Biomphalaria snail vectors of schistosomiasis supports a diverse microbiome 94%
- Defining marine bacterioplankton community assembly rules by contrasting the importance of environmental determinants and biotic interactions 92%
- Bee microbiomes in a changing climate: investigating the effects of temperature on solitary bee life history and health 92%
Similar papers in this journal
Similar papers in this journal
- Mosquito-bacteria interactions during larval development trigger metabolic changes with carry-over effects on adult fitness 94%
- Environmental transcriptomics under heat stress: Can environmental RNA reveal changes in gene expression of aquatic organisms? 94%
- Complete metamorphosis and microbiota turnover in insects 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.