Atlantic salmon reovirus infection causes a CD8 T cell myocarditis in Atlantic salmon (Salmo salar L.).

Aase B Mikalsen, Oyvind Haugland, Marit Rode, Inge Tom Solbakk, Oystein Evensen
Author Information
  1. Aase B Mikalsen: Department of Basic Sciences and Aquatic Medicine, Norwegian School of Veterinary Science, Oslo, Norway.

Abstract

Heart and skeletal inflammation (HSMI) of farmed Atlantic salmon (Salmo salar L.) is a disease characterized by a chronic myocarditis involving the epicardium and the compact and spongious part of the heart ventricle. Chronic myositis of the red skeletal muscle is also a typical finding of HSMI. Piscine reovirus (PRV) has been detected by real-time PCR from farmed and wild salmon with and without typical changes of HSMI and thus the causal relationship between presence of virus and the disease has not been fully determined. In this study we show that the Atlantic salmon reovirus (ASRV), identical to PRV, can be passaged in GF-1 cells and experimental challenge of naïve Atlantic salmon with cell culture passaged reovirus results in cardiac and skeletal muscle pathology typical of HSMI with onset of pathology from 6 weeks, peaking by 9 weeks post challenge. ASRV replicates in heart tissue and the peak level of virus replication coincides with peak of heart lesions. We further demonstrate mRNA transcript assessment and in situ characterization that challenged fish develop a CD8+ T cell myocarditis.

References

  1. Eur J Immunol. 1991 Aug;21(8):1793-800 [PMID: 1831127]
  2. Autoimmun Rev. 2004 Nov;3(7-8):476-86 [PMID: 15546794]
  3. Mol Immunol. 2008 Feb;45(4):887-97 [PMID: 17875325]
  4. Immunogenetics. 1993;37(6):469-73 [PMID: 8436423]
  5. Mol Immunol. 2008 Mar;45(6):1531-47 [PMID: 18022233]
  6. Fish Shellfish Immunol. 2007 Aug;23(2):390-400 [PMID: 17442587]
  7. Fish Shellfish Immunol. 2006 Feb;20(2):209-26 [PMID: 15939625]
  8. Future Virol. 2009 Jan;4(1):47-53 [PMID: 19884976]
  9. Vaccine. 2005 Dec 1;23(48-49):5488-99 [PMID: 16098640]
  10. Tissue Antigens. 1990 Feb;35(2):82-91 [PMID: 2111591]
  11. Mol Immunol. 2005 Jun;42(10):1225-34 [PMID: 15829311]
  12. J Biochem Mol Biol. 2005 Sep 30;38(5):571-6 [PMID: 16202237]
  13. J Immunol. 2005 Aug 15;175(4):2484-94 [PMID: 16081820]
  14. Immunogenetics. 2004 Aug;56(5):368-74 [PMID: 15322779]
  15. Dev Comp Immunol. 2000 Dec;24(8):751-63 [PMID: 10906388]
  16. BMC Genomics. 2008 Jan 07;9:5 [PMID: 18179705]
  17. Fish Shellfish Immunol. 2007 Mar;22(3):182-96 [PMID: 16784874]
  18. Adv Immunol. 2007;96:41-101 [PMID: 17981204]
  19. Fish Shellfish Immunol. 2009 Jan;26(1):10-8 [PMID: 18983924]
  20. Dev Comp Immunol. 2005;29(8):693-702 [PMID: 15854681]
  21. Immunogenetics. 1993;37(6):437-41 [PMID: 8436418]
  22. Mol Immunol. 2006 Mar;43(8):1152-62 [PMID: 16137766]
  23. Fish Shellfish Immunol. 2005 Apr;18(4):335-44 [PMID: 15561563]
  24. Physiol Genomics. 2007 Dec 19;32(1):33-44 [PMID: 17804604]
  25. Scand J Immunol. 2009 Feb;69(2):90-8 [PMID: 19170962]
  26. J Virol. 2004 Aug;78(15):7938-44 [PMID: 15254166]
  27. J Mol Evol. 2004 Apr;58(4):449-59 [PMID: 15114423]
  28. Dev Comp Immunol. 2008;32(7):850-8 [PMID: 18262266]
  29. J Fish Dis. 2007 Jan;30(1):13-25 [PMID: 17241401]
  30. Dis Aquat Organ. 2004 Jun 11;59(3):217-24 [PMID: 15264718]
  31. Fish Shellfish Immunol. 2008 Oct;25(4):351-7 [PMID: 18400516]
  32. Virology. 2006 May 10;348(2):370-7 [PMID: 16497350]
  33. Virol J. 2010 Nov 10;7:309 [PMID: 21067578]
  34. Mol Immunol. 2007 Mar;44(8):2056-65 [PMID: 17049605]
  35. Immunogenetics. 2003 Aug;55(5):325-35 [PMID: 12845498]
  36. Circulation. 1999 Mar 2;99(8):1091-100 [PMID: 10051305]
  37. Dev Comp Immunol. 2009 Apr;33(4):646-52 [PMID: 19073209]
  38. Cell Mol Life Sci. 2011 Aug;68(15):2615-26 [PMID: 21063894]
  39. Eur J Biochem. 2003 Dec;270(23):4647-54 [PMID: 14622251]
  40. J Virol. 2011 Jun;85(11):5275-86 [PMID: 21411528]
  41. J Fish Dis. 2006 Apr;29(4):233-44 [PMID: 16635063]
  42. Dev Comp Immunol. 2011 Jul;35(7):752-63 [PMID: 21352850]
  43. J Fish Dis. 2004 Jun;27(6):351-8 [PMID: 15189375]
  44. Fish Shellfish Immunol. 2009 Jul;27(1):65-72 [PMID: 19427383]
  45. Fish Shellfish Immunol. 2006 Apr;20(4):637-46 [PMID: 16230027]
  46. Fish Shellfish Immunol. 2010 Jan;28(1):30-9 [PMID: 19766193]
  47. J Immunol. 2000 Mar 15;164(6):3132-9 [PMID: 10706703]
  48. Immunity. 2008 Feb;28(2):149-59 [PMID: 18275828]
  49. PLoS One. 2010 Jul 09;5(7):e11487 [PMID: 20634888]
  50. Cytokine Growth Factor Rev. 2007 Oct-Dec;18(5-6):425-33 [PMID: 17683972]
  51. N Engl J Med. 2000 Nov 9;343(19):1388-98 [PMID: 11070105]

MeSH Term

Animals
CD8-Positive T-Lymphocytes
Myocarditis
Reoviridae Infections
Salmo salar

Word Cloud

Created with Highcharts 10.0.0salmonAtlanticHSMIreovirusskeletalmyocarditishearttypicalcellfarmedSalmosalarLdiseasemusclePRVvirusASRVpassagedchallengepathologyweekspeakTHeartinflammationcharacterizedchronicinvolvingepicardiumcompactspongiouspartventricleChronicmyositisredalsofindingPiscinedetectedreal-timePCRwildwithoutchangesthuscausalrelationshippresencefullydeterminedstudyshowidenticalcanGF-1cellsexperimentalnaïvecultureresultscardiaconset6peaking9postreplicatestissuelevelreplicationcoincideslesionsdemonstratemRNAtranscriptassessmentsitucharacterizationchallengedfishdevelopCD8+infectioncausesCD8

Similar Articles

Cited By (31)