» Articles » PMID: 19616850

Infectious Salmon Anaemia Virus (ISAV) Isolates Induce Distinct Gene Expression Responses in the Atlantic Salmon (Salmo Salar) Macrophage/dendritic-like Cell Line TO, Assessed Using Genomic Techniques

Overview
Journal Mol Immunol
Date 2009 Jul 21
PMID 19616850
Citations 20
Authors
Affiliations
Soon will be listed here.
Abstract

Infectious salmon anaemia virus (ISAV) is a marine orthomyxovirus of significant interest not only as a cause of a fatal disease of farmed Atlantic salmon resulting in severe economic losses to the aquaculture industry, but also as the only poikilothermic orthomyxovirus. ISAV targets vascular endothelial cells and macrophages, and is known to influence the expression of both innate and adaptive immune response relevant genes. ISAV isolates from different geographic regions have been shown to vary considerably in their pathogenicity for Atlantic salmon. This study aimed to characterize the Atlantic salmon TO macrophage/dendritic-like cell responses to infection with a selection of ISAV isolates of different genotypes and pathogenicity phenotypes. The first TO infection trial used ISAV isolates NBISA01 and RPC/NB-04-085-1 of high and low pathogenicity, respectively, and global gene expression analyses were carried out using approximately 16,000 gene (16K) salmonid cDNA microarrays to compare RNA samples extracted from TO cells harvested 24 and 72h post-infection versus time-matched uninfected controls. Overall, the microarray experiment showed that RPC/NB-04-085-1-infected cells had a higher total number of reproducibly dysregulated genes (88 genes: the sum of genes greater than 2-fold up- or down-regulated in all four replicate microarrays of a given comparison) than the NBISA01-infected cells (10 genes) for the combined sampling points (i.e. 24 and 72h). This microarray experiment identified several salmon genes that were differentially regulated by NBISA01 and RPC/NB-04-085-1, and which may be useful as molecular biomarkers of ISAV infection. An initial quantitative reverse transcription-polymerase chain reaction (QRT-PCR) study involving 25 microarray-identified genes confirmed the differences in the level of dysregulation of host transcripts between the two ISAV isolates (i.e. NBISA01 and RPC/NB-04-085-1). A second TO infection trial was run using a selection of four clinical ISAV isolates (Norway-810/9/99, a high pathogenicity isolate of European genotype; RPC/NB-04-085-1, a low pathogenicity isolate of European genotype; NBISA01, a high pathogenicity isolate of North American genotype; and RPC/NB-01-0593-1, an intermediate pathogenicity isolate of North American genotype), and UV-inactivated RPC/NB-04-085-1, with sampling at 24, 36, 48, 72, 96, and 120h post-infection. The microarray-identified, QRT-PCR validated suite of 24 molecular biomarkers of response to ISAV were used in a second QRT-PCR experiment to assess the TO cell gene expression responses to the four ISAV isolates at all six time points in the infection. The QRT-PCR data showed that RPC/NB-04-085-1 caused the highest fold changes of most immune-relevant genes [such as interferon-inducible protein Gig1, Mx1 protein, interferon-induced protein with tetratricopeptide repeats 5, Radical S-adenosyl methionine domain-containing protein (viperin), and several genes involved in the ISGylation pathway], followed by Norway-810/9/99. NBISA01 and RPC/NB-01-0593-01 (both of North American genotype) showed low fold up-regulation of transcripts that were highly induced by RPC/NB-04-085-1 isolate. These findings show that ISAV isolates have strain-specific variations in their ability to induce immune response genes.

Citing Articles

Viperin and Its Effect on SVCV Replication in Common Carp, .

Meng Y, Hu X, Jiang N, Fan Y, Li Y, Xue M Animals (Basel). 2025; 15(1.

PMID: 39795039 PMC: 11718829. DOI: 10.3390/ani15010096.


Transcriptomic response of lumpfish () head kidney to viral mimic, with a focus on the family.

Emam M, Kumar S, Eslamloo K, Caballero-Solares A, Hall J, Xue X Front Immunol. 2024; 15:1439465.

PMID: 39211041 PMC: 11357929. DOI: 10.3389/fimmu.2024.1439465.


The myxozoans and modulate rainbow trout immune responses: quantitative shotgun proteomics at the portals of entry after single and co-infections.

Saleh M, Hummel K, Schlosser S, Razzazi-Fazeli E, Bartholomew J, Holzer A Front Cell Infect Microbiol. 2024; 14:1369615.

PMID: 38803570 PMC: 11129561. DOI: 10.3389/fcimb.2024.1369615.


Temperature impacts Atlantic salmon's () immunological response to infectious salmon anemia virus (ISAv).

Groves L, Whyte S, Purcell S, Michaud D, Cai W, Garber A Fish Shellfish Immunol Rep. 2023; 4:100099.

PMID: 37293549 PMC: 10245120. DOI: 10.1016/j.fsirep.2023.100099.


The Skeleton and Biomineralization Mechanism as Part of the Innate Immune System of Stony Corals.

Levy S, Mass T Front Immunol. 2022; 13:850338.

PMID: 35281045 PMC: 8913943. DOI: 10.3389/fimmu.2022.850338.