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Updated: May 5, 2026

Comprehensive Assessment of Germline Chemical Toxicity Using the Nematode Caenorhabditis elegans
Published on: February 22, 2015
Integration of Transcriptome, Intestinal Microbiota, and Physiology Reveals Toxicity Responses of Procambarus clarkii
Zihao Liang1,2, Zengqin Ruan1,2, Hubiao Jiang1,2
1Ministry of Education, Key Laboratory of Agri-products Quality and Biosafety (Anhui Agricultural University), Hefei 230036, China.
Abstract:
Chlorantraniliprole, a widely used diamide insecticide in rice cultivation, poses ecotoxicological risks to Procambarus clarkii in rice-crayfish integrated systems (RCIS), a prevalent aquaculture practice in China. This study integrates transcriptomics, intestinal microbiota analysis, and physiological assessments to elucidate these effects. We determined a 96 h LC50 of 154.15 mg/L, indicating low acute toxicity. Chronic exposure (14 days) at environmentally relevant (0.05 mg/L) and elevated (5.00 mg/L) concentrations revealed significant bioaccumulation in the hepatopancreas and intestine, leading to dose-dependent histopathological damage, oxidative stress, and disrupted intestinal microbiota. Transcriptomic analysis identified 2294 differentially expressed genes (89.4% downregulated) under high-dose exposure, highlighting suppressed metabolic processes and endoplasmic reticulum stress. Molecular docking confirmed strong binding affinities (ΔG = -33.54 to -66.36 kcal/mol) between chlorantraniliprole and antioxidant enzymes, suggesting direct inhibition mechanisms. These findings provide novel insights into the multilevel toxicity of chlorantraniliprole in crustaceans and establish a foundation for ecological risk assessments in RCIS.
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