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Cytochrome P450 <t>metabolism</t> of exogenous substances and glutathione metabolism pathway in Amur ide. ( A ) Pattern diagram of the metabolic pathway of P450 to exogenous substances ( B ) Pattern diagram of glutathione metabolic pathway ( C – E ) Histogram and line chart with dual axes of anpep , gpx , chac1 genes in different alkalinity groups of JY ( F – H ), histogram and line chart with dual axes of anpep , gpx , chac1 gene in different alkalinity groups of DY ( I ) Changes in 2-S-glutathione acetate content in different alkalinity groups of JY and DY ( J ) Changes in cysteinyl-glycine content in different alkalinity groups of JY and DY
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Cytochrome P450 <t>metabolism</t> of exogenous substances and glutathione metabolism pathway in Amur ide. ( A ) Pattern diagram of the metabolic pathway of P450 to exogenous substances ( B ) Pattern diagram of glutathione metabolic pathway ( C – E ) Histogram and line chart with dual axes of anpep , gpx , chac1 genes in different alkalinity groups of JY ( F – H ), histogram and line chart with dual axes of anpep , gpx , chac1 gene in different alkalinity groups of DY ( I ) Changes in 2-S-glutathione acetate content in different alkalinity groups of JY and DY ( J ) Changes in cysteinyl-glycine content in different alkalinity groups of JY and DY
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Cytochrome P450 <t>metabolism</t> of exogenous substances and glutathione metabolism pathway in Amur ide. ( A ) Pattern diagram of the metabolic pathway of P450 to exogenous substances ( B ) Pattern diagram of glutathione metabolic pathway ( C – E ) Histogram and line chart with dual axes of anpep , gpx , chac1 genes in different alkalinity groups of JY ( F – H ), histogram and line chart with dual axes of anpep , gpx , chac1 gene in different alkalinity groups of DY ( I ) Changes in 2-S-glutathione acetate content in different alkalinity groups of JY and DY ( J ) Changes in cysteinyl-glycine content in different alkalinity groups of JY and DY
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Cytochrome P450 metabolism of exogenous substances and glutathione metabolism pathway in Amur ide. ( A ) Pattern diagram of the metabolic pathway of P450 to exogenous substances ( B ) Pattern diagram of glutathione metabolic pathway ( C – E ) Histogram and line chart with dual axes of anpep , gpx , chac1 genes in different alkalinity groups of JY ( F – H ), histogram and line chart with dual axes of anpep , gpx , chac1 gene in different alkalinity groups of DY ( I ) Changes in 2-S-glutathione acetate content in different alkalinity groups of JY and DY ( J ) Changes in cysteinyl-glycine content in different alkalinity groups of JY and DY

Journal: Animal Microbiome

Article Title: The influence of glutathione metabolism on alkaline adaptation of Amur ide ( Leuciscus waleckii ) and potential role of gut microbiota

doi: 10.1186/s42523-025-00452-6

Figure Lengend Snippet: Cytochrome P450 metabolism of exogenous substances and glutathione metabolism pathway in Amur ide. ( A ) Pattern diagram of the metabolic pathway of P450 to exogenous substances ( B ) Pattern diagram of glutathione metabolic pathway ( C – E ) Histogram and line chart with dual axes of anpep , gpx , chac1 genes in different alkalinity groups of JY ( F – H ), histogram and line chart with dual axes of anpep , gpx , chac1 gene in different alkalinity groups of DY ( I ) Changes in 2-S-glutathione acetate content in different alkalinity groups of JY and DY ( J ) Changes in cysteinyl-glycine content in different alkalinity groups of JY and DY

Article Snippet: Oxidative stress markers: Total antioxidant capacity (T-AOC), malondialdehyde (MDA), glutathione S-transferase (GST), reduced glutathione (GSH), oxidized glutathione (GSSG), glutathione peroxidase (GPx), and catalase (CAT) were measured using kits from Suzhou Comin Biotechnology Co., Ltd. Nitrogen metabolism markers: Blood ammonia (AMON) and urea nitrogen (BUN) levels were quantified using kits from Nanjing Jiancheng Bioengineering Institute.

Techniques: