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The nedd-8 activating enzyme gene underlies genetic resistance to infectious pancreatic necrosis virus in Atlantic salmon

Pavelin, Jon (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
Jin, Ye Hwa (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
Gratacap, Remi L. (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
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Taggart, John B. (author)
Univ Stirling, Sch Nat Sci, Inst Aquaculture, Stirling FK9 4LA, Scotland.
Hamilton, Alastair (author)
Hendrix Genet RTC, Villa Korver, Spoorstr, NL-695831 C Boxmeer, Netherlands.
Verner-Jeffreys, David W. (author)
Cefas, Weymouth Lab, Weymouth DT4 8UB, Dorset, England.
Paley, Richard K. (author)
Cefas, Weymouth Lab, Weymouth DT4 8UB, Dorset, England.
Rubin, Carl-Johan (author)
Uppsala universitet,Institutionen för medicinska vetenskaper,Institutionen för medicinsk biokemi och mikrobiologi,Science for Life Laboratory, SciLifeLab
Bishop, Stephen C. (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
Bron, James E. (author)
Univ Stirling, Sch Nat Sci, Inst Aquaculture, Stirling FK9 4LA, Scotland.
Robledo, Diego (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
Houston, Ross D. (author)
Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland.
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Univ Edinburgh, Sch Vet Studies, Roslin Inst & Royal Dick, Edinburgh EH25 9RG, Midlothian, Scotland Univ Stirling, Sch Nat Sci, Inst Aquaculture, Stirling FK9 4LA, Scotland. (creator_code:org_t)
Elsevier, 2021
2021
English.
In: Genomics. - : Elsevier. - 0888-7543 .- 1089-8646. ; 113:6, s. 3842-3850
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Genetic resistance to infectious pancreatic necrosis virus (IPNV) in Atlantic salmon is a rare example of a trait where a single locus (QTL) explains almost all of the genetic variation. Genetic marker tests based on this QTL on salmon chromosome 26 have been widely applied in selective breeding to markedly reduce the incidence of the disease. In the current study, whole genome sequencing and functional annotation approaches were applied to characterise genes and variants in the QTL region. This was complemented by an analysis of differential expression between salmon fry of homozygous resistant and homozygous susceptible genotypes challenged with IPNV. These analyses pointed to the NEDD-8 activating enzyme 1 (nae1) gene as a putative functional candidate underlying the QTL effect. The role of nae1 in IPN resistance was further assessed via CRISPR-Cas9 knockout of the nae1 gene and chemical inhibition of the nae1 protein activity in Atlantic salmon cell lines, both of which resulted in highly significant reduction in productive IPNV replication. In contrast, CRISPR-Cas9 knockout of a candidate gene previously purported to be a cellular receptor for the virus (cdh1) did not have a major impact on productive IPNV replication. These results suggest that nae1 is the causative gene underlying the major QTL affecting resistance to IPNV in salmon, provide further evidence for the critical role of neddylation in hostpathogen interactions, and highlight the value in combining high-throughput genomics approaches with targeted genome editing to understand the genetic basis of disease resistance.

Subject headings

NATURVETENSKAP  -- Biologi -- Genetik (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Genetics (hsv//eng)

Keyword

QTL
Disease resistance
CRISPR
Whole genome resequencing
Gene expression
Aquaculture

Publication and Content Type

ref (subject category)
art (subject category)

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