The Impact of Genetic Architecture on Genome-Wide Evaluation Methods

Author:

Daetwyler Hans D12,Pong-Wong Ricardo1,Villanueva Beatriz34,Woolliams John A1

Affiliation:

1. The Roslin Institute and Royal (Dick) School of Veterinary Studies, The University of Edinburgh, Roslin EH25 9PS, United Kingdom

2. Animal Breeding and Genomics Centre, Wageningen University, 6700 AH Wageningen, Netherlands

3. Scottish Agriculture College, Edinburgh EH9 3JG, United Kingdom and

4. Departamento de Mejora Genética Animal, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria, 28040 Madrid, Spain

Abstract

Abstract The rapid increase in high-throughput single-nucleotide polymorphism data has led to a great interest in applying genome-wide evaluation methods to identify an individual's genetic merit. Genome-wide evaluation combines statistical methods with genomic data to predict genetic values for complex traits. Considerable uncertainty currently exists in determining which genome-wide evaluation method is the most appropriate. We hypothesize that genome-wide methods deal differently with the genetic architecture of quantitative traits and genomes. A genomic linear method (GBLUP), and a genomic nonlinear Bayesian variable selection method (BayesB) are compared using stochastic simulation across three effective population sizes and a wide range of numbers of quantitative trait loci (NQTL). GBLUP had a constant accuracy, for a given heritability and sample size, regardless of NQTL. BayesB had a higher accuracy than GBLUP when NQTL was low, but this advantage diminished as NQTL increased and when NQTL became large, GBLUP slightly outperformed BayesB. In addition, deterministic equations are extended to predict the accuracy of both methods and to estimate the number of independent chromosome segments (Me) and NQTL. The predictions of accuracy and estimates of Me and NQTL were generally in good agreement with results from simulated data. We conclude that the relative accuracy of GBLUP and BayesB for a given number of records and heritability are highly dependent on Me, which is a property of the target genome, as well as the architecture of the trait (NQTL).

Publisher

Oxford University Press (OUP)

Subject

Genetics

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