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211 results on '"salmonid alphavirus"'

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1. MAVS disruption impairs downstream signaling and results in higher virus replication levels of salmonid alphavirus subtype 3 but not infectious pancreatic necrosis virus in vitro.

3. Effect of pancreas disease vaccines on infection levels and virus transmission in Atlantic salmon (Salmo salar) challenged with salmonid alphavirus, genotype 2.

4. Effect of pancreas disease vaccines on infection levels and virus transmission in Atlantic salmon (Salmo salar) challenged with salmonid alphavirus, genotype 2

5. Assessment of listing and categorisation of animal diseases within the framework of the Animal Health Law (Regulation (EU)2016/429): Infection with salmonid alphavirus (SAV).

6. A case of melanization after intramuscular vaccination in Atlantic salmon (Salmo salar L.)—Possible causes and implications.

7. Assessment of listing and categorisation of animal diseases within the framework of the Animal Health Law (Regulation (EU)2016/429): Infection with salmonid alphavirus (SAV)

9. Diffuse melanization of the red skeletal musculature in farmed Atlantic salmon (Salmo salar L.).

10. Virus-specific antibody secreting cells reside in the peritoneal cavity and systemic immune sites of Atlantic salmon (Salmo salar) challenged intraperitoneally with salmonid alphavirus.

11. Effects of a DNA and multivalent oil-adjuvanted vaccines against pancreas disease in Atlantic salmon (Salmo salar) challenged with salmonid alphavirus subtype 3

12. Salmonid alphavirus non-structural protein 2 is a key protein that activates the NF-κB signaling pathway to mediate inflammatory responses.

14. Effect of two constant light regimens on antibody profiles and immune gene expression in Atlantic salmon following vaccination and experimental challenge with salmonid alphavirus.

15. Red and melanized focal changes in the white skeletal muscle of farmed rainbow trout Oncorhynchus mykiss.

16. MAVS disruption impairs downstream signaling and results in higher virus replication levels of salmonid alphavirus subtype 3 but not infectious pancreatic necrosis virus in vitro .

17. Genetically modified attenuated salmonid alphavirus: A potential strategy for immunization of Atlantic salmon.

18. Effect of a novel DNA vaccine against pancreas disease caused by salmonid alphavirus subtype 3 in Atlantic salmon (Salmo salar).

19. Cellular and molecular pathogenesis of Salmonid alphavirus 1 in Atlantic salmon Salmo salar L

20. Atlantic salmon kidney (ASK) cells are an effective model to characterise interferon (IFN) and IFN-induced gene expression following salmonid alphavirus infection.

21. Detection of specific Atlantic salmon antibodies against salmonid alphavirus using a bead-based immunoassay.

22. Salmonid Alphavirus Subtype 3 Induces Prolonged Local B Cell Responses in Atlantic Salmon (Salmo salar) After Intraperitoneal Infection

23. Genome Sequencing of SAV3 Reveals Repeated Seeding Events of Viral Strains in Norwegian Aquaculture

24. Field Evaluation of Diagnostic Test Sensitivity and Specificity for Salmonid Alphavirus (SAV) Infection and Pancreas Disease (PD) in Farmed Atlantic salmon (Salmo salar L.) in Norway Using Bayesian Latent Class Analysis

25. Salmonid alphavirus (SAV)

26. Genomic Epidemiology of Salmonid Alphavirus in Norwegian Aquaculture Reveals Recent Subtype-2 Transmission Dynamics and Novel Subtype-3 Lineages

27. Salmonid Alphavirus Subtype 3 Induces Prolonged Local B Cell Responses in Atlantic Salmon (Salmo salar) After Intraperitoneal Infection.

28. Genome Sequencing of SAV3 Reveals Repeated Seeding Events of Viral Strains in Norwegian Aquaculture.

29. Assessment of listing and categorisation of animal diseases within the framework of the Animal Health Law (Regulation (EU)2016/429):Infection with salmonid alphavirus (SAV)

30. Emergence of Salmonid Alphavirus Genotype 2 in Norway—Molecular Characterization of Viral Strains Circulating in Norway and Scotland

31. Antiviral defense in salmonids – Mission made possible?

32. Effect of pancreas disease caused by SAV 2 on protein and fat digestion in Atlantic salmon.

33. Isolation of salmonid alphavirus subtype 6 from wild‐caught ballan wrasse, Labrus bergylta (Ascanius).

34. Sea Lice (Lepeophtheirus salmonis) Infestation Reduces the Ability of Peripheral Blood Monocytic Cells (PBMCs) to Respond to and Control Replication of Salmonid Alphavirus in Atlantic Salmon (Salmo salar L.)

35. Health Surveillance of Wild Brown Trout (Salmo trutta fario) in the Czech Republic Revealed a Coexistence of Proliferative Kidney Disease and Piscine Orthoreovirus-3 Infection

36. Time after seawater transfer influences immune cell abundance and responses to SAV3 infection in Atlantic salmon.

37. EvaGreen-based real-time PCR assay for sensitive detection of salmonid alphavirus.

38. Prevalence of piscine orthoreovirus and salmonid alphavirus in sea‐caught returning adult Atlantic salmon (<italic>Salmo salar</italic> L.) in northern Norway.

39. Establishment and evaluation of an indirect immunofluorescence assay for the detection of salmonid alphavirus.

40. Atlantic salmon adapted to seawater for 9 weeks develop a robust immune response to salmonid alphavirus upon bath challenge.

41. Molecular testing of adult Pacific salmon and trout (<italic>Oncorhynchus</italic> spp.) for several RNA viruses demonstrates widespread distribution of piscine orthoreovirus in Alaska and Washington.

42. Molecular cloning of MDA5, phylogenetic analysis of RIG-I-like receptors ( RLRs) and differential gene expression of RLRs, interferons and proinflammatory cytokines after in vitro challenge with IPNV, ISAV and SAV in the salmonid cell line TO.

43. First confirmation of salmonid alphavirus infection in rainbow trout in Bosnia and Herzegovina and Serbia

44. Vaccine Adjuvants in Fish Vaccines Make a Difference: Comparing Three Adjuvants (Montanide ISA763A Oil, CpG/Poly I:C Combo and VHSV Glycoprotein) Alone or in Combination Formulated with an Inactivated Whole Salmonid Alphavirus Antigen

45. Rapid and sensitive detection of salmonid alphavirus using TaqMan real-time PCR.

46. Ballan wrasse ( Labrus bergylta Ascanius) is not susceptible to pancreas disease caused by salmonid alphavirus subtype 2 and 3.

47. Immunological interactions between Piscine orthoreovirus and Salmonid alphavirus infections in Atlantic salmon.

48. Immune gene profiles in Atlantic salmon (salmo salar L.) post-smolts infected with SAV3 by bath-challenge show a delayed response and lower levels of gene transcription compared to injected fish.

49. The epidemiology of pancreas disease in salmonid aquaculture: a summary of the current state of knowledge.

50. Fish DDX3 enhances antiviral immunity by up-regulating antiviral interferon responses.

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