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Large scale transcriptional analysis of MHC class I haplotype diversity in sheep.

Deepali VasoyaTimothy ConnelleyThomas TzelosHelen ToddKeith T Ballingall
Published in: HLA (2024)
Domestic sheep (Ovis aries) have been an important component of livestock agricultural production for thousands of years. Preserving genetic diversity within livestock populations maintains a capacity to respond to changing environments and rapidly evolving pathogens. MHC genetic diversity can influence immune functionality at individual and population levels. Here, we focus on defining functional MHC class I haplotype diversity in a large cohort of Scottish Blackface sheep pre-selected for high levels of MHC class II DRB1 diversity. Using high-throughput amplicon sequencing with three independent sets of barcoded primers we identified 134 MHC class I transcripts within 38 haplotypes. Haplotypes were identified with between two and six MHC class I genes, plus variable numbers of conserved sequences with very low read frequencies. One or two highly transcribed transcripts dominate each haplotype indicative of two highly polymorphic, classical MHC class I genes. Additional clusters of medium, low, and very low expressed transcripts are described, indicative of lower transcribed classical, non-classical and genes whose function remains to be determined.
Keyphrases
  • genetic diversity
  • high throughput
  • genome wide
  • single cell
  • gene expression
  • transcription factor
  • bioinformatics analysis
  • heavy metals
  • oxidative stress
  • single molecule
  • dna methylation
  • heat shock