Zhao_2026_Ecotoxicol.Environ.Saf_322_120524

Reference

Title : Cadmium exposure triggers adaptive physiological and molecular responses that undermine development in Bactrocera dorsalis - Zhao_2026_Ecotoxicol.Environ.Saf_322_120524
Author(s) : Zhao W , Zou D , Xu N , Qiu YJ , He W , Wang JJ , Wei DD
Ref : Ecotoxicology & Environmental Safety , 322 :120524 , 2026
Abstract :

The oriental fruit fly, Bactrocera dorsalis (Diptera: Tephritidae), an important invasive fruit and vegetable pest, exhibits a broad host range that includes citrus, mango, and banana. Its larvae bore into fruit tissues, causing severe economic losses. Cadmium (Cd^2) is classified among the most toxic heavy metal contaminants, capable of accumulating in plants and biomagnifying through food chains, thereby threatening biodiversity and human health. This study assessed the effects of Cd^2 stress on B. dorsalis larval growth and development, alongside changes in key enzymatic activities and transcriptional responses of metabolic pathways. Cd^2 exposure significantly inhibited growth and development in a concentration-dependent manner. Compared to controls, larvae exposed to 10 mg/L Cd^2 showed reductions in body weight of 1.88-3.73 mg, prolonged development by 2-7 days, and a 20%-40% decrease in survival. Adults exposed to 10 mg/L Cd^2 displayed significantly reduced fecundity. At 20 mg/L Cd^2, pupal weight declined by 5 mg, and adult eclosion rate dropped by 25%. In third-instar larvae, exposure to Cd10 (10 mg/L Cd^2) significantly increased the activities of superoxide dismutase (SOD), peroxidase (POD), and carboxylesterase (CarE) by 1.14-, 2.17-, and 1.72-fold, respectively, while markedly reducing catalase (CAT) activity to 44% of the control level. Comparative transcriptomic analysis revealed that Cd5 (5 mg/L Cd^2) treatment significantly upregulated genes involved in oxidative phosphorylation and ribosome pathways. Additionally, detoxification-related genes, such as ABC transporters and cytochrome P450, also exhibited substantial transcriptional changes. In conclusion, Cd^2 exposure impairs the growth and development, and physiology of B. dorsalis, driving changes in antioxidant and detoxification enzyme activities and triggering transcriptional responses in oxidative phosphorylation pathways. These findings also elucidate the molecular basis of Cd^2 stress adaptation in this species.

PubMedSearch : Zhao_2026_Ecotoxicol.Environ.Saf_322_120524
PubMedID: 42470961

Related information

Citations formats

Zhao W, Zou D, Xu N, Qiu YJ, He W, Wang JJ, Wei DD (2026)
Cadmium exposure triggers adaptive physiological and molecular responses that undermine development in Bactrocera dorsalis
Ecotoxicology & Environmental Safety 322 :120524

Zhao W, Zou D, Xu N, Qiu YJ, He W, Wang JJ, Wei DD (2026)
Ecotoxicology & Environmental Safety 322 :120524