Genomic inbreeding trends in the global Thoroughbred horse population driven by influential sire lines and selection for exercise trait-related genes
McGivney, B. A.; Han, H.; Corduff, L. R.; Katz, L. M.; Tozaki, T.; MacHugh, D. E.; Hill, E.
Show abstract
The Thoroughbred horse is a highly valued domestic animal population under strong selection for athletic phenotypes. Here we present a high resolution genomics-based analysis of inbreeding in the population that may form the basis for evidence-based discussion amid concerns in the breeding industry over the increasing use of small numbers of popular sire lines, which may accelerate a loss of genetic diversity. In the most comprehensive globally representative sample of Thoroughbreds to-date (n = 10,118), including prominent stallions (n = 305) from the major bloodstock regions of the world, we show using pan-genomic SNP genotypes that there has been a highly significant decline in global genetic diversity during the last five decades (FIS R2 = 0.942, P = 2.19 x 10-13; FROH R2 = 0.88, P = 1.81 x 10-10) that has likely been influenced by the use of popular sire lines. Estimates of effective population size in the global and regional populations indicate that there is some level of regional variation that may be exploited to improve global genetic diversity. Inbreeding is often a consequence of selection, which in managed animal populations tends to be driven by preferences for cultural, aesthetic or economically advantageous phenotypes. Using a composite selection signals approach, we show that centuries of selection for favourable athletic traits among Thoroughbreds acts on genes with functions in behaviour, musculoskeletal conformation and metabolism. As well as classical selective sweeps at core loci, polygenic adaptation for functional modalities in cardiovascular signalling, organismal growth and development, cellular stress and injury, metabolic pathways and neurotransmitters and other nervous system signalling has shaped the Thoroughbred athletic phenotype. Our results demonstrate that genomics-based approaches to identify genetic outcrosses will add valuable objectivity to augment traditional methods of stallion selection and that genomics-based methods will be beneficial to actively monitor the population to address the marked inbreeding trend.\n\nAuthor SummaryIn the highly valuable global Thoroughbred horse industry, there is no systematic industry-mediated genetic population management. Purposeful inbreeding is common practice and there is an increasing use of popular sires. Inbreeding can lead to population health and fertility decline, but there is little objective genomics-based data for the Thoroughbred to catalyse action and support changes in breeding practices. Here, we describe the most comprehensive genetic analysis in the population among 10,000 Thoroughbreds from the major bloodstock regions of the world and reveal a highly significant increase in inbreeding during the last five decades. The main drivers of genetic diversity are the most influential breed-shaping sire lines, Sadlers Wells, Danehill and A.P. Indy. We identified genomic regions subject to positive selection containing genes for athletic traits. Our results highlight the need for population-wide efforts to proactively avert the potential increase of deleterious alleles that may impact on animal health in order to safeguard the future of a breed that is admired for its athleticism and enjoyed for sport worldwide.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A 1-bp deletion in bovine QRICH2 causes low sperm count and immotile sperm with multiple morphological abnormalities 94%
- Sequenced-based GWAS for linear classification traits in Belgian Blue beef cattle reveals new coding variants in genes regulating body size in mammals 94%
- Genomic analyses of Asiatic Mouflon in Iran provide insights into the domestication and evolution of sheep 94%
Similar papers in this journal
- Activation of cryptic splicing in bovine WDR19 is associated with reduced semen quality and male fertility 95%
- The fourspine stickleback (Apeltes quadracus) has an XY sex chromosome system with polymorphic inversions on both X and Y chromosomes 94%
- Powerful detection of polygenic selection and evidence of environmental adaptation in US beef cattle 94%
Similar papers in this journal
- Novel and known signals of selection for fat deposition in domestic sheep breeds from Africa and Eurasia 93%
- Whole Genome Detection of Sequence and Structural Polymorphism in Six Diverse Horses 93%
- In-depth investigation of genome to refine QTL positions for spontaneous sex-reversal in XX rainbow trout 93%
Similar papers in this journal
- Genomics of sex allocation in the parasitoid wasp Nasonia vitripennis 93%
- A nonsense mutation of bone morphogenetic protein-15 (BMP15) causes both infertility and increased litter size in pigs. 93%
- Chromosome-length genome assembly and structural variations of the primal Basenji dog (Canis lupus familiaris) genome 92%
Similar papers in this journal
- Extensive genome-wide association analyses identify genotype-by-environment interactions of growth traits in Simmental cattle 95%
- New loci and neuronal pathways for resilience to heat stress in animals 94%
- A combined RAD-Seq and WGS approach reveals the genomic basis of yellow colour variation in bumble bee Bombus terrestris 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.