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Persistent infection by IPNV was induced in RTG-2 and RTG-P1 cells in vitro and the influence of this phenomenon on viral infectivity, viral antigen expression and interference with homologous and heterologous viruses was characterized over successive passages. The induction of IFN was also assessed, as was the sequence of the VP2 viral capsid protein, the region believed to be responsible for virulence, attenuation or persistence. Viral antigen expression was recorded in cells with no evidence of cytopathic effects and in these conditions, flow cytometry was more sensitive than RT-PCR to demonstrate the presence of a non-lytic virus. Interference of homologous viral infection could be detected in cross-infection experiments and in RTG-P1 cells persistently infected with IPNV, the Mx1 promoter could still be activated for at least 5 successive passages. Indeed, although over-induction of luciferase was not observed by re-infection with homologous or heterologous viruses, a significant increase in luciferase was induced by poly I:C. IFN transcripts could be quantified by qRT-PCR in the persistent cells at several passages, suggesting that IFN plays a role in maintaining IPNV persistence. In addition, we observed the same determinants in the VP2 sequences from the persistent virus as those described previously for IPNV adaptation and persistence in cell culture.
Molecular Sequence Data, IFN induction in IPNV, Cell Line, Fish Diseases, Viral Interference, Animals, Amino Acid Sequence, RNA, Messenger, Fish diseases, Antigens, Viral, DNA Primers, Infectious pancreatic necrosis virus (IPNV), Viral Structural Proteins, Fish viruses, Base Sequence, Sequence Homology, Amino Acid, Virulence, Infectious pancreatic necrosis virus, Birnaviridae Infections, Perciformes, Double-stranded RNA virus, Rainbow trout RTG-2 cell line, Oncorhynchus mykiss, DNA, Viral, Interferons
Molecular Sequence Data, IFN induction in IPNV, Cell Line, Fish Diseases, Viral Interference, Animals, Amino Acid Sequence, RNA, Messenger, Fish diseases, Antigens, Viral, DNA Primers, Infectious pancreatic necrosis virus (IPNV), Viral Structural Proteins, Fish viruses, Base Sequence, Sequence Homology, Amino Acid, Virulence, Infectious pancreatic necrosis virus, Birnaviridae Infections, Perciformes, Double-stranded RNA virus, Rainbow trout RTG-2 cell line, Oncorhynchus mykiss, DNA, Viral, Interferons
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