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Irus salmonis secretory/excretory products and their effects on Atlantic salmon immune gene regulation. Parasite Immunol 2007, 29(4):179?89. Fast MD, Muise DM, Easy RE, Ross NW, Johnson SC: The effects of Lepeophtheirus salmonis infections on the stress response and immunological status of Atlantic salmon (Salmo salar). Fish Shellfish Immunol 2006, 21(3):228?41. Fast MD, Ross NW, Johnson SC: Prost
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Irus salmonis secretory/excretory products and their effects on Atlantic salmon immune gene regulation. Parasite Immunol 2007, 29(4):179?89. Fast MD, Muise DM, Easy RE, Ross NW, Johnson SC: The effects of Lepeophtheirus salmonis infections on the stress response and immunological status of Atlantic salmon (Salmo salar). Fish Shellfish Immunol 2006, 21(3):228?41. Fast MD, Ross NW, Johnson SC: Prost
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Efenses in fish skin. ISRN Immunology 2012, 2012:853470. 35. Jantzen SG, Sanderson DS, von Schalburg KR, Yasuike M, Marass F, Koop BF: A 44 K microarray dataset of the changing transcriptome in developing Atlantic salmon (Salmo salar L.). BMC Res Notes 2011, 4:88. 36. Chain FJJ, Ilieva D, Evans BJ: Single-species microarrays and comparative transcriptomics. PLoS One 2008, 3(9):e3279. 37. K tz D: M
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Efenses in fish skin. ISRN Immunology 2012, 2012:853470. 35. Jantzen SG, Sanderson DS, von Schalburg KR, Yasuike M, Marass F, Koop BF: A 44 K microarray dataset of the changing transcriptome in developing Atlantic salmon (Salmo salar L.). BMC Res Notes 2011, 4:88. 36. Chain FJJ, Ilieva D, Evans BJ: Single-species microarrays and comparative transcriptomics. PLoS One 2008, 3(9):e3279. 37. K tz D: M
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Efenses in fish skin. ISRN Immunology 2012, 2012:853470. 35. Jantzen SG, Sanderson DS, von Schalburg KR, Yasuike M, Marass F, Koop BF: A 44 K microarray dataset of the changing transcriptome in developing Atlantic salmon (Salmo salar L.). BMC Res Notes 2011, 4:88. 36. Chain FJJ, Ilieva D, Evans BJ: Single-species microarrays and comparative transcriptomics. PLoS One 2008, 3(9):e3279. 37. K tz D: M
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Ne expression analyses of immune responses in Atlantic salmon during early stages of infection by salmon louse (Lepeophtheirus salmonis) revealed bi-phasic responses coinciding with the copepod-chalimus transition. BMC Genomics 2011, 12:141.Sutherland et al. BMC Genomics 2014, 15:200 http://www.biomedcentral.com/1471-2164/15/Page 16 of25. Rolff J, Siva-Jothy MT: Invertebrate ecological immunology.
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N Salmo salar and coho salmon Oncorhynchus kisutch to experimental infection with sea lice Lepeophtheirus salmonis. Dis Aquat Organ 2002, 52(1):57?8. 47. Mordue AJ, Birkett MA: A review of host finding behaviour in the parasitic sea louse, Lepeophtheirus salmonis (Caligidae: Copepoda). J Fish Dis 2009, 32(1):3?3. 48. Bj n PA, Finstad B: The physiological effects of salmon lice infection on sea tro
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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