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Published on: January 16, 2015
Is malathion oncogenic for mosquitoes? A transcriptomic and histological study of adults derived from malathion
Audrey Arnal1, Erika Burioli2, Lisa Jacquin3
1MIVEGEC, IRD, CNRS, Université de Montpellier, Montpellier, France; Departamento de Etología, Fauna Silvestre y Animales de Laboratorio, Facultad de Medicina Veterinaria y Zootecnia, Universidad Nacional Autónoma de México (UNAM), Ciudad de México, Mexico.
Abstract:
Malathion is a widely used pesticide with potentially oncogenic properties and may have deleterious effects on organism health and fitness. Although malathion use is now restricted in the European Union, it remains widely used for public health campaigns in other parts of the world, particularly for mosquito control. Understanding its sublethal and long-term effects is thus essential, both for evaluating its ecotoxicological impacts and for anticipating resistance mechanisms. However, empiric data on its effects in wild organisms - especially in invertebrates - remain limited. Here, we quantitatively investigated whether larval exposure to environmentally realistic concentrations of malathion could affect mosquito tissue structure and gene expression profiles of adult Aedes aegypti (yellow fever mosquitoes), using both RNA-seq and histological approaches. Results show no neoplastic or pre-neoplastic lesions in adults exposed to malathion during larval development, contrary to previous studies in other organisms showing carcinogenic effects of malathion. However, our differential gene expression analyses revealed significant changes in genes related to mitochondrial function, energy metabolism, and detoxification pathways, suggesting significant physiological impacts of malathion in adults after early-life pesticide exposure. Notably, females exhibited stronger transcriptomic responses than males, including the upregulation of genes involved in detoxification (e.g., P450 cytochromes), olfactory perception, and stress response, with potential consequences for resistance mechanisms. Our findings underscore the ability of mosquitoes to mount transient molecular responses to environmental pollutants, potentially contributing to the long-term selection of metabolic resistance traits - an outcome with important implications for vector control strategies.
Insights
Larval exposure to malathion pesticide did not cause cancer in yellow fever mosquitoes. However, it significantly altered gene expression related to energy and detoxification, especially in females, impacting mosquito health and resistance.
Area of Science:
- Ecotoxicology
- Molecular Biology
- Entomology
Background:
- Malathion is a widely used pesticide with potential oncogenic properties and health effects.
- Its use in public health campaigns, like mosquito control, necessitates understanding its long-term impacts.
- Data on malathion's sublethal effects on wild invertebrates, particularly mosquitoes, are limited.
Purpose of the Study:
- To investigate the effects of larval malathion exposure on tissue structure and gene expression in adult Aedes aegypti.
- To evaluate the ecotoxicological impacts and potential resistance mechanisms in mosquitoes.
- To assess the physiological consequences of early-life pesticide exposure in adult mosquitoes.
Main Methods:
- Quantitative analysis of malathion effects on mosquito tissue structure using histology.
- RNA sequencing (RNA-seq) to analyze gene expression profiles in adult Aedes aegypti.
- Exposure of mosquito larvae to environmentally realistic concentrations of malathion.
Main Results:
- No neoplastic or pre-neoplastic lesions were observed in adult mosquitoes exposed to malathion during larval development.
- Significant changes in gene expression were detected in adults, particularly in pathways related to mitochondrial function, energy metabolism, and detoxification.
- Female mosquitoes showed stronger transcriptomic responses than males, with upregulated detoxification and stress response genes.
Conclusions:
- Larval malathion exposure induces significant physiological changes in adult mosquitoes, despite not causing carcinogenic effects.
- The observed molecular responses, especially in females, suggest potential for developing metabolic resistance to malathion.
- Findings have critical implications for vector control strategies and managing pesticide resistance in mosquito populations.
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