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Ophtheirus salmonis) and in whole-body louse homogenate. J Parasitol 2000, 86(6):1199?205. Jones SRM: The occurrence and mechanisms of innate immunity against parasites in fish. Dev Comp Immunol 2001, 25(8?):841?52. Jones SRM, Fast MD, Johnson SC, Groman DB: Differential rejection of salmon lice by pink and chum salmon: disease consequences and expression of proinflammatory genes. Dis Aquat Organ
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A lice on juvenile Pacific salmon in the Gulf Islands area of British Columbia, Canada. Aquaculture 2009, 297(1?):31?7. Wagner GN, Fast MD, Johnson SC: Physiology and immunology of Lepeophtheirus salmonis infections of salmonids. Trends Parasitol 2008, 24(4):176?83. Jones SRM, Kim E, Bennett W: Early development of resistance to the salmon louse, Lepeophtheirus salmonis (Kr er), in juvenile pink s
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Llection and maintenance, exposures and sample collection, and hematocrit analysis. BFK and SRMJ conceived of the study, designed the experiment and assisted in analyses. All authors have read and approve of the manuscript. Acknowledgements This research was funded by Genome BC, the Province of British Columbia, the Department of Fisheries and Oceans Canada (DFO), NSERC, the University of Victoria
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Llection and maintenance, exposures and sample collection, and hematocrit analysis. BFK and SRMJ conceived of the study, designed the experiment and assisted in analyses. All authors have read and approve of the manuscript. Acknowledgements This research was funded by Genome BC, the Province of British Columbia, the Department of Fisheries and Oceans Canada (DFO), NSERC, the University of Victoria
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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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D differentially expressed genes in the skin of chum salmon at 6 days post exposure involved in immunity, proliferation, and other functions. Antiviral genes are suppressed as is seen in the anteriorSutherland et al. BMC Genomics 2014, 15:200 http://www.biomedcentral.com/1471-2164/15/Page 15 ofkidney of both Pacific salmon. Colors and formats are as described in Additional file 6: Figure S3. Addit
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Vel interaction partner of FGF-7, FGF-10 and FGF-22 and regulates FGF activity: implications for epithelial repair. Oncogene 2005, 24(34):5269?277. 44. Nurminsky D, Magee C, Faverman L, Nurminskaya M: Regulation of chondrocyte differentiation by actin-severing protein adseverin. Dev Biol 2007, 302(2):427?37. 45. Vairapandi M, Balliet AG, Hoffman B, Liebermann DA: GADD45b and GADD45g are cdc2/cycli
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Rest. Nature 1994, 371(6494):257?61. 40. Boot RG, Blommaart EFC, Swart E, Ghauharali-van der Vlugt K, Bijl N, Moe C, Place A, Aerts J: Identification of a novel acidic mammalian chitinase distinct from chitotriosidase. J Biol Chem 2001, 276(9):6770?778. 41. Zhu Z, Zheng T, Homer RJ, Kim YK, Chen NY, Cohn L, Hamid Q, Elias JA: Acidic mammalian chitinase in asthmatic Th2 inflammation and IL-13 pathw