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Ballingall, K. T.

Publications and source records attributed to Ballingall, K. T..

2 recordsLinked to original sources

Haplotyping MHC class IIa by high throughput screening in an isolated sheep population

Investigating the current evolutionary processes acting on a highly polymorphic gene region, such as the major histocompatibility complex (MHC), requires extensive population data for both genotypes and phenotypes. The MHC consists of several tightly linked loci with both allelic and gene content variation, making it challenging to genotype. Eight class IIa haplotypes have previously been identified in the Soay sheep (Ovis aries) of St. Kilda using Sanger sequencing and cloning, but no single locus is representative of all haplotypes. Here, we exploit the closed nature of the island population of Soay sheep and its limited haplotypic variation to identify a panel of SNPs that enable imputation of MHC haplotypes. We compared MHC class IIa haplotypes determined by Sanger sequence-based genotyping of 135 individuals to their SNP profiles generated using the Ovine Infinium HD BeadChip. A panel of 11 SNPs could reliably determine MHC diplotypes, and two additional SNPs within the DQA1 gene enabled detection of a recombinant haplotype affecting only the SNPs downstream of the expressed genes. The panel of 13 SNPs was genotyped in 5951 Soay sheep, of which 5349 passed quality control. Using the Soay sheep pedigree, we were able to trace the origin and inheritance of the recombinant SNP haplotype. This SNP-based method has enabled the rapid generation of locus-specific MHC genotypes for large numbers of Soay sheep. This volume of high-quality genotypes in a well-characterized population of free-living sheep will be valuable for investigating the mechanisms maintaining diversity at the MHC.

evolutionary biology

A rare MHC haplotype confers selective advantage in a free-living ruminant

Genes within the major histocompatibility complex (MHC) are the most variable identified in vertebrates. Pathogen-mediated selection (PMS) is believed to be the main force maintaining diversity at MHC class I and II genes, but it has proven hard to demonstrate the exact PMS regime that is acting in natural populations. Demonstrating contemporary selection on MHC alleles is not trivial, and previous work has been constrained by limited genetic tools, low sample sizes and short time scales and has sometimes involved anticonservative statistical approaches. Here, we use appropriate statistical approaches to examine associations between MHC variation and several fitness measurements including total fitness (lifetime breeding success) and five fitness components, in 3400 wild Soay sheep (Ovis aries) monitored over their lifetimes between 1989 and 2012. We found haplotypes C and D were associated with decreased and increased male total fitness respectively. In terms of fitness components, juvenile survival was positively associated with haplotype divergence. Of the eight MHC haplotypes (A-H), haplotypes C and F were associated with decreased adult male breeding success and decreased adult female life span respectively. Consistent with the increased male total fitness, haplotype D, which is the rarest, has increased in frequency throughout the study period. Our results suggest that contemporary balancing selection is acting on MHC class II genes in Soay sheep and that different selection mechanisms are acting between juveniles and adults.

evolutionary biology