Genome‐wide association analysis reveals cryptic alleles as an important factor in heterosis for fatness in chicken F2 population
- 9 August 2007
- journal article
- Published by Wiley in Animal Genetics
- Vol. 38 (5) , 491-498
- https://doi.org/10.1111/j.1365-2052.2007.01642.x
Abstract
Genome-wide association studies have become possible in the chicken because of the recent availability of the complete genome sequence, a polymorphism map and high-density single nucleotide polymorphism (SNP) genotyping platforms. We used these tools to study the genetic basis of a very high level of heterosis that was previously observed for fatness in two F(2) populations established by crossing one outbred broiler (meat-type) sire with dams from two unrelated, highly inbred, light-bodied lines (Fayoumi and Leghorn). In each F(2) population, selective genotyping was carried out using phenotypically extreme males for abdominal fat percentage (AF) and about 3000 SNPs. Single-point association analysis of about 500 informative SNPs per cross showed significant association (P < 0.01) of 15 and 24 markers with AF in the Broiler x Fayoumi and Broiler x Leghorn crosses respectively. These SNPs were on 10 chromosomes (GGA1, 2, 3, 4, 7, 8, 10, 12, 15 and 27). Interestingly, of the 39 SNPs that were significantly associated with AF, there were about twice as many homozygous genotypes associated with higher AF that traced back to the inbred lines alleles, although the broiler line had on average higher AF. These SNPs are considered to be associated with QTL with cryptic alleles. This study reveals cryptic alleles as an important factor in heterosis for fatness observed in two chicken F(2) populations, and suggests epistasis as the common underlying mechanism for heterosis and cryptic allele expression. The results of this study also demonstrate the power of high marker-density SNP association studies in discovering QTL that were not detected by previous microsatellite-based genotyping studies.Keywords
This publication has 43 references indexed in Scilit:
- Unraveling the genetic basis of hybrid vigorProceedings of the National Academy of Sciences, 2006
- Overdominant quantitative trait loci for yield and fitness in tomatoProceedings of the National Academy of Sciences, 2006
- QTLs associated with growth traits and abdominal fat weight and their interactions with gender and hatch in commercial meat‐type chickensAnimal Genetics, 2006
- QTL analysis of body composition and metabolic traits in an intercross between chicken lines divergently selected for growthPhysiological Genomics, 2006
- Sequence and comparative analysis of the chicken genome provide unique perspectives on vertebrate evolutionNature, 2004
- The Population Genetic Theory of Hidden Variation and Genetic RobustnessGenetics, 2004
- In Search of the Molecular Basis of HeterosisPlant Cell, 2003
- INBREEDING, DEVELOPMENTAL STABILITY, AND CANALIZATION IN THE SAND CRICKET GRYLLUS FIRMUSEvolution, 2003
- Genetic Mapping of the QTL Affecting Abdominal Fat Deposition in Chickens.The Journal of Poultry Science, 2001
- Taking stock of complex trait genetics in miceTrends in Genetics, 1995