Intestinal Responses to Short-Term Hexaflumuron Exposure in Grass Carp (Ctenopharyngodon idella): A Combined Physiological, Transcriptomic, and Gut Microbiota Perspective

Hexaflumuron is a benzoylurea insecticide with potential application against arthropod ectoparasites in aquaculture, but its toxicity to non-target fish remains insufficiently characterized. This study evaluated acute toxicity and intestinal responses to sublethal concentrations of hexaflumuron in juvenile grass carp (Ctenopharyngodon idella). The 48- and 96-h LC50 values were 8.80 and 7.16 mg/L, respectively. Fish were subsequently exposed to nominal concentrations of 0.07 or 0.72 mg/L hexaflumuron for 96 h. Intestinal histopathology, antioxidant biomarkers, 16S rRNA sequencing, and transcriptomics were investigated. Both exposure groups showed focal intestinal alterations. Malondialdehyde levels increased, total superoxide dismutase activity exhibited a biphasic response, and catalase activity and reduced glutathione content declined, indicating altered redox homeostasis. Overall gut microbial structure showed no significant difference, whereas taxon-specific shifts occurred, including an increase in Aeromonas to 15.40% at 0.72 mg/L. Transcriptomic analysis identified 1226 and 5496 differentially expressed genes at 0.07 and 0.72 mg/L, respectively. Both concentrations suppressed ribosome biogenesis, protein homeostasis, mitochondrial bioenergetic programs, and complement-associated functions, while the higher concentration induced broader enrichment of cytokine, phagolysosomal, antigen-presentation, and leukocyte-migration pathways. Overall, these results indicated that hexaflumuron perturbs intestinal homeostasis through synergistic impacts on cellular biosynthesis, mitochondrial bioenergetic programs, redox balance, immune regulation, tissue remodeling, and microbial composition.

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Journal
Animals
Published
2026-09-28
DOI
https://doi.org/10.3390/ani16193056
Primary Topic
Aquaculture disease management and microbiota
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article
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article

Intestinal Responses to Short-Term Hexaflumuron Exposure in Grass Carp (Ctenopharyngodon idella): A Combined Physiological, Transcriptomic, and Gut Microbiota Perspective

Xiaohui Ai, Qiuhong Yang, Shun Zhou, Jiangtao Li
Animals
Aquaculture disease management and microbiota
article

Intestinal Responses to Short-Term Hexaflumuron Exposure in Grass Carp (Ctenopharyngodon idella): A Combined Physiological, Transcriptomic, and Gut Microbiota Perspective

Xiaohui Ai, Qiuhong Yang, Shun Zhou, Jiangtao Li
article en

Abstract

Hexaflumuron is a benzoylurea insecticide with potential application against arthropod ectoparasites in aquaculture, but its toxicity to non-target fish remains insufficiently characterized. This study evaluated acute toxicity and intestinal responses to sublethal concentrations of hexaflumuron in juvenile grass carp (Ctenopharyngodon idella). The 48- and 96-h LC50 values were 8.80 and 7.16 mg/L, respectively. Fish were subsequently exposed to nominal concentrations of 0.07 or 0.72 mg/L hexaflumuron for 96 h. Intestinal histopathology, antioxidant biomarkers, 16S rRNA sequencing, and transcriptomics were investigated. Both exposure groups showed focal intestinal alterations. Malondialdehyde levels increased, total superoxide dismutase activity exhibited a biphasic response, and catalase activity and reduced glutathione content declined, indicating altered redox homeostasis. Overall gut microbial structure showed no significant difference, whereas taxon-specific shifts occurred, including an increase in Aeromonas to 15.40% at 0.72 mg/L. Transcriptomic analysis identified 1226 and 5496 differentially expressed genes at 0.07 and 0.72 mg/L, respectively. Both concentrations suppressed ribosome biogenesis, protein homeostasis, mitochondrial bioenergetic programs, and complement-associated functions, while the higher concentration induced broader enrichment of cytokine, phagolysosomal, antigen-presentation, and leukocyte-migration pathways. Overall, these results indicated that hexaflumuron perturbs intestinal homeostasis through synergistic impacts on cellular biosynthesis, mitochondrial bioenergetic programs, redox balance, immune regulation, tissue remodeling, and microbial composition.

AnimalsVol. 16(19)
Yangtze River Fisheries Research Institute (CN), Chinese Academy of Fishery Sciences (CN)
Life below water
Openalex Percentile: Top 19%
Aquaculture disease management and microbiota
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