Induction patterns of new CYP1 genes in environmentally exposed rainbow trout

Maria E Jönsson1, Kai Gao, Jan A Olsson

  • 1Department of Environmental Toxicology, Evolutionary Biology Centre, Uppsala University, Norbyvägen 18A, Uppsala, Sweden. maria.jonsson@ebc.uu.se

Insights

Researchers identified new cytochrome P4501 (CYP1) genes in rainbow trout. Environmental monitoring revealed significant CYP1 gene induction in gills, suggesting their utility in assessing aquatic pollution.

Area of Science:

  • Environmental toxicology
  • Molecular biology
  • Fish biology

Background:

  • The cytochrome P4501 (CYP1) gene family is crucial for xenobiotic metabolism in fish.
  • Rainbow trout (Oncorhynchus mykiss) genome characterization is incomplete regarding CYP1 subfamilies.
  • Understanding CYP1 gene expression is vital for assessing environmental pollutant impacts.

Purpose of the Study:

  • To identify novel CYP1 subfamily genes in rainbow trout.
  • To develop quantitative mRNA expression analysis methods for these genes.
  • To investigate basal and induced expression patterns in gills and liver, including environmental exposure.

Main Methods:

  • Cloning of four new rainbow trout CYP1 transcripts (rbCYP1B1, rbCYP1C1, rbCYP1C2, rbCYP1C3).
  • Quantitative mRNA expression analysis using real-time PCR.
  • Exposure experiments with a potent aryl hydrocarbon receptor (AhR) agonist (PCB126) and field monitoring of caged fish.

Main Results:

  • Six CYP1 transcripts (rbCYP1A, rbCYP1B1, rbCYP1C1, rbCYP1C2, rbCYP1C3) were quantified.
  • All six transcripts were significantly induced by PCB126 in both gills and liver, indicating AhR regulation.
  • Caged fish exhibited strong gill rbCYP1 induction across all sites, with weaker liver responses, suggesting gills are sensitive indicators of AhR agonists.

Conclusions:

  • Rainbow trout possess diverse CYP1 gene subfamilies, including newly identified CYP1B and CYP1C members.
  • The identified CYP1 genes are responsive to aryl hydrocarbon receptor (AhR) agonists.
  • Differential expression patterns of multiple CYP1 genes in gills and liver can serve as a sensitive tool for monitoring AhR-active pollutants in aquatic ecosystems.

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