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Identification of a Putative Quantitative Trait Nucleotide in Guanylate Binding Protein 5 for Host Response to PRRS Virus Infection
BMC Genomics
  • James Eugene Koltes, Iowa State University
  • Eric R. Fritz-Waters, Iowa State University
  • Christopher J. Eisley, Iowa State University
  • Igseo Choi, United States Department of Agriculture
  • Hua Bao, University of Alberta
  • Arun Kommadath, University of Alberta
  • Nick V. L. Serão, Iowa State University
  • Nicholas James Boddicker, Genesus Inc.
  • Samuel M. Abrams, United States Department of Agriculture
  • Martine Schroyen, Iowa State University
  • Hyelee Park Loyd, Iowa State University
  • Christopher K. Tuggle, Iowa State University
  • Graham S. Plastow, University of Alberta
  • LeLuo Guan, University of Alberta
  • Paul Stothard, University of Alberta
  • Joan K. Lunney, United States Department of Agriculture
  • Peng Liu, Iowa State University
  • Susan Carpenter, Iowa State University
  • Raymond Rowland, Kansas State University
  • Jack C. M. Dekkers, Iowa State University
  • James M Reecy, Iowa State University
Document Type
Article
Publication Version
Published Version
Publication Date
1-1-2015
DOI
10.1186/s12864-015-1635-9
Abstract

Previously, we identified a major quantitative trait locus (QTL) for host response to Porcine Respiratory and Reproductive Syndrome virus (PRRSV) infection in high linkage disequilibrium (LD) with SNP rs80800372 on Sus scrofa chromosome 4 (SSC4). Within this QTL, guanylate binding protein 5 (GBP5) was differentially expressed (DE) (p < 0.05) in blood from AA versus AB rs80800372 genotyped pigs at 7,11, and 14 days post PRRSV infection. All variants within the GBP5 transcript in LD with rs80800372 exhibited allele specific expression (ASE) in AB individuals (p < 0.0001). A transcript re-assembly revealed three alternatively spliced transcripts for GBP5. An intronic SNP in GBP5, rs340943904, introduces a splice acceptor site that inserts five nucleotides into the transcript. Individuals homozygous for the unfavorable AA genotype predominantly produced this transcript, with a shifted reading frame and early stop codon that truncates the 88 C-terminal amino acids of the protein. RNA-seq analysis confirmed this SNP was associated with differential splicing by QTL genotype (p < 0.0001) and this was validated by quantitative capillary electrophoresis (p < 0.0001). The wild-type transcript was expressed at a higher level in AB versus AA individuals, whereas the five-nucleotide insertion transcript was the dominant form in AA individuals. Splicing and ASE results are consistent with the observed dominant nature of the favorable QTL allele. The rs340943904 SNP was also 100 % concordant with rs80800372 in a validation population that possessed an alternate form of the favorable B QTL haplotype. GBP5 is known to play a role in inflammasome assembly during immune response. However, the role of GBP5 host genetic variation in viral immunity is novel. These findings demonstrate that rs340943904 is a strong candidate causal mutation for the SSC4 QTL that controls variation in host response to PRRSV.

Comments

This article is from BMC Genomics 16 (2015): 412, doi:10.1186/s12864-015-1635-9.

Rights
Works produced by employees of the U.S. Government as part of their official duties are not copyrighted within the U.S. The content of this document is not copyrighted.
Language
en
File Format
application/pdf
Citation Information
James Eugene Koltes, Eric R. Fritz-Waters, Christopher J. Eisley, Igseo Choi, et al.. "Identification of a Putative Quantitative Trait Nucleotide in Guanylate Binding Protein 5 for Host Response to PRRS Virus Infection" BMC Genomics Vol. 16 (2015) p. 1 - 13
Available at: http://works.bepress.com/james_reecy/88/