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Lipid metabolism is essential in maintaining energy homeostasis in multicellular organisms. In vertebrates, a group of nuclear receptor transcription factors named peroxisome proliferator-activated receptors (PPARs, NR1C) regulate the expression of many genes involved in these processes. We have rec...
2022-02-28 | MTBLS2131 | MetaboLights
Lipid metabolism is essential in maintaining energy homeostasis in multicellular organisms. In vertebrates, the peroxisome proliferator-activated receptors (PPARs, NR1C) regulate the expression of many genes involved in these processes. Four Ppar subtypes from Atlantic cod (Gadus morhua) were recent...
ORGANISM(S): Gadus morhua (Atlantic cod) 
2022-09-20 | PXD031739 | Pride
This study investigates how parental exposure to the water-soluble fraction (WSF) of crude oil influences transcriptomic profiles in Atlantic cod (Gadus morhua) offspring. Fish were exposed to WSF for 20 days prior to spawning, and four offspring groups were generated by fertilization: control (unex...
ORGANISM(S): Gadus morhua 
In order to investigate the underlying mechanisms of PCB 153 mediated toxicity to Atlantic cod (Gadus morhua), we analyzed the liver proteome of fish exposed to various doses of PCB 153 (0, 0.5, 2 and 8mg/kg body weight) for two weeks and examined the effects on expression of liver proteins using qu...
ORGANISM(S): Gadus morhua (Atlantic cod) 
2017-01-17 | PXD004362 | Pride
Gene expression profiling of Atlantic cod (Gadus morhua) embryogenesis
ORGANISM(S): Gadus morhua 
In order to investigate the underlying mechanisms of methylmecury (MeHg)-mediated toxicity to Atlantic cod (Gadus morhua), we analyzed the liver proteome of fish exposed in vivo to MeHg (0, 0.5, 2 mg/kg body weight) for 2 weeks. Label-free quantitative mass spectrometry enabled quantification of 114...
ORGANISM(S): Gadus morhua (Atlantic cod) 
2016-08-09 | PXD004311 | Pride
In the North Sea and adjacent North Atlantic coastal areas fish experience relatively high levels of persistent organic pollutants. The aim of this study is to compare the mode of actions of environmentally relevant concentrations of halogenated compounds and their mixtures in Atlantic cod. Juvenil...
ORGANISM(S): Gadus morhua 
Male and female Atlantic cod (Gadus morhua) liver transcriptome analysis following in vivo waterborne PAH, AP and phenol exposure
ORGANISM(S): Gadus morhua 
Methylmercury (MeHg) is a highly toxic environmental pollutant. To understand the mechanisms of toxicity of the compound and possibly to discover new biomarkers for environmental monitoring, we have conducted toxicogenomics studies. We designed 126k-cod-oligonucleotide arrays and performed genome-wi...
ORGANISM(S): Gadus morhua 
The Atlantic cod, Gadus morhua, is an important species both for traditional fishery and increasingly also in fish farming. The Atlantic cod is also under potential threat from various environmental changes such as pollution and climate change, but the biological impact of such changes are not well ...
ORGANISM(S): Gadus morhua 
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