Transcriptomics

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Exposure to Perfluorooctanoic acid accelerates Drosophila melanogaster juvenile development and disrupts mitochondrial metabolism


ABSTRACT: Per- and polyfluoroalkyl substances (PFAS) are persistent environmental contaminants with poorly understood sublethal effects on insects. Perfluorooctanoic acid (PFOA), one of the most widely distributed legacy PFAS, bioaccumulates globally and is increasingly recognized for altering organismal physiology beyond traditional toxicity endpoints. Here, we use the fruit fly Drosophila melanogaster as a model to examine how PFOA exposure during growth reshapes insect life-history progression and metabolic homeostasis. We show that PFOA exposure induces a tradeoff between developmental rate and physiological robustness, providing a framework for understanding its context-dependent effects on insect fitness. At environmentally relevant concentrations (tens of ppb to low µM), PFOA induces precocious expression of stage-regulated genes and leads to lasting changes in adult metabolic state. At higher concentrations used to probe mechanism, PFOA accelerates larval development, disrupts mitochondrial membrane potential, and increases whole-organism metabolic heat production, indicative of altered mitochondrial energetic efficiency. Consistent with this tradeoff, larvae that develop faster under permissive conditions exhibit heightened sensitivity to environmental stressors, including elevated temperature and reduced food hydration. Together, these findings demonstrate that PFOA disrupts conserved metabolic and developmental processes in a dose- and context-dependent manner, highlighting sublethal effects that may influence insect resilience under environmental stress.

ORGANISM(S): Drosophila melanogaster

PROVIDER: GSE335328 | GEO | 2026/08/12

REPOSITORIES: GEO

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