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Ments on the manuscript and statistical discussion. Thanks to B Cox for assistance in primer testing. Thanks to anonymous reviewers for comments on the manuscript. Author details 1 Centre for Biomedical Research, Department of Biology, University of Victoria, Victoria, BC V8W 3N5, Canada. 2Aquatic Genomics Research Center, National Research Institute of Fisheries Science, Fisheries Research Agency
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Usly described [10]. Data analysis was performed using qbasePLUS (Biogazelle) and reference gene stability was tested using geNorm [81]. The three most stable reference genes chosen for the current analysis in all species and all tissues were dynein light chain 1 cytoplasmic, U6 snRNA-associated Sm-like protein lsm8, and mRNA turnover protein 4 homolog with collective M (and CV) values for Atlanti
Usly described [10]. Data analysis was performed using qbasePLUS (Biogazelle) and reference gene stability was tested using geNorm [81]. The three most stable reference genes chosen for the current analysis in all species and all tissues were dynein light chain 1 cytoplasmic, U6 snRNA-associated Sm-like protein lsm8, and mRNA turnover protein 4 homolog with collective M (and CV) values for Atlanti
Stocks. Aquaculture 2004, 232(1?):41?2. 31. Gjerde B, Odegard J, Thorland I: Estimates of genetic variation in the susceptibility of Atlantic salmon (Salmo salar) to the salmon louse Lepeophtheirus salmonis. Aquaculture 2011, 314(1?):66?2. 32. Jones CS, Lockyer AE, Verspoor E, Secombes CJ, Noble LR: Towards selective breeding of Atlantic salmon for sea louse resistance: approaches to identify trai
Stocks. Aquaculture 2004, 232(1?):41?2. 31. Gjerde B, Odegard J, Thorland I: Estimates of genetic variation in the susceptibility of Atlantic salmon (Salmo salar) to the salmon louse Lepeophtheirus salmonis. Aquaculture 2011, 314(1?):66?2. 32. Jones CS, Lockyer AE, Verspoor E, Secombes CJ, Noble LR: Towards selective breeding of Atlantic salmon for sea louse resistance: approaches to identify trai