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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
Abstract:
The cytochrome P4501 (CYP1) gene family comprises four subfamilies in fish: CYP1A, CYP1B, CYP1C, and CYP1D. Only two CYP1 genes, CYP1A1 and CYP1A3, are so far known in rainbow trout (Oncorhynchus mykiss). The present study aimed to identify other CYP1 subfamily genes in rainbow trout, to establish methods for quantitative mRNA expression analysis of these genes, and to determine their basal and induced mRNA expression in gills and liver. Another goal was to examine their mRNA expression in environmentally exposed fish. We cloned four new transcripts, denoted rbCYP1B1, rbCYP1C1, rbCYP1C2, and rbCYP1C3. Levels of these and the previously known rbCYP1A transcripts were determined by real-time PCR in unexposed fish, fish exposed to the potent aryl hydrocarbon receptor (AhR) agonist 3,3',4,4',5-pentachlorobiphenyl (PCB126), and fish caged in various waters in the Uppsala region (Sweden). The mRNA expression patterns observed in unexposed rainbow trout (basal levels) were markedly similar to those reported for orthologous genes in other species. All six transcripts were induced by PCB126 in gills and liver, suggesting all genes to be AhR regulated. The caged fish showed clear rbCYP1 induction in gills at all monitoring sites (up to 70-fold the basal level), whereas the liver responses were weak; induction (up to 5-fold) was recorded only at the Uppsala municipal sewage treatment plant outlet. Gill filament EROD activity was induced at all caging sites. Most interestingly, the rbCYP1 gene response patterns in gills differed among caging sites and among subfamilies. The EROD induction seemed to only reflect induction of rbCYP1A transcription. Response patterns of multiple CYP1 genes in gills and liver could provide an improved monitoring strategy. Such patterns could be used to characterize complex mixtures of AhR agonists and antagonists in aquatic environments.
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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