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Differences in smolt status affect the resistance of Atlantic salmon ( Salmo salar L.) against infectious pancreatic necrosis, while vaccine‐mediated protection is unaffected

Ingvill Jensen; Mathias C. Overrein; Børge N. Fredriksen; Guro Strandskog; Tore Seternes
Journal of Fish Diseases · Vol. 42, Issue 9 · pp. 1271-1282 · 2019

Abstract

In today's aquaculture of Atlantic salmon ( Salmo salar L.), a majority of viral disease outbreaks occur after seawater transfer. A relevant question is how the parr–smolt transformation influences the efficacy of viral vaccines and the innate resistance against viral diseases. In this study, vaccinated and unvaccinated A. salmon parr were exposed to different photoperiodic regimens (1‐, 3‐ or 6‐week continuous light—WCL). Fish groups at different stages in the smoltification process were induced, as demonstrated by differences in morphological and physiological smolt parameters. At the time of seawater transfer, the 6‐WCL group had reached a more pronounced stage in the smoltification process than the 1‐WCL group. In unvaccinated fish, the subsequent cohabitation challenge with infectious pancreatic necrosis virus (IPNV) gave a significantly higher accumulated mortality in the 6‐WCL group (87%) compared to the 1‐WCL group (39%). In the vaccinated groups, this effect was not apparent and there were no differences in accumulated mortality between the 1 WCL, 3 WCL and 6‐WCL groups. These data suggest that the resistance to IPN in A. salmon was negatively influenced by smoltification, while vaccine‐mediated protection to IPN was maintained equally well irrespective of smolt status.

Bibliographic Information

JournalJournal of Fish Diseases
PublisherWiley
Publication Date2019-09-01
Publication Year2019
Volume42
Issue9
Pages1271-1282
Document TypeJournal Article
Print ISSN0140-7775
eISSN1365-2761
DOI10.1111/jfd.13049
SubjectGeneral Aquaculture, Fisheries & Fish Science

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652761
Publisher PageOpen Publisher Page
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