Genomic prediction exploits single nucleotide polymorphisms (SNPs) across the whole genome for predicting genetic merit of selection candidates. In most models for genomic prediction, e.g. BayesA, B, C, R and GBLUP, independence of SNP effects is assumed. However, SNP effects are expected to be locally dependent given the presence of a nearby QTL because SNPs surrounding the QTL do not segregate independently. A consequence of ignoring this dependence is that SNPs with small effects may be overly shrunk, e.g. effects from markers with high minor allele frequencies (MAF) that flank QTL with low MAF. A nested mixture model (BayesN) is developed to account for the dependence of effects of SNPs that are closely linked, where the effects of SNPs...
Genomic prediction uses a reference population of animals with SNP genotypes and phenotypes to predi...
Background: the development of next-generation sequencing technologies (NGS) has made the use of who...
Abstract Background: Genomic prediction of breeding values from dense single nucleotide polymorphism...
Genomic prediction exploits single nucleotide polymorphisms (SNPs) across the whole genome for predi...
We propose a novel model (BayesN) for genomic prediction, where multiple markers in a small segment ...
Genomic prediction estimates breeding values by exploiting linkage disequilibrium (LD) between quant...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Due to the advancement in high throughput technology, single nucleotide polymorphism (SNP) is routin...
Genomic prediction estimates breeding values by exploiting linkage disequilibrium (LD) between quant...
The prediction of complex or quantitative traits from single nucleotide polymorphism (SNP) genotypes...
BACKGROUND: Genomic prediction of breeding values from dense single nucleotide polymorphisms (SNP) g...
Background: Dense SNP genotypes are often combined with complex trait phenotypes to map causal varia...
AbstractThis study investigated the effect on the reliability of genomic prediction when a small num...
Genomic prediction uses a reference population of animals with SNP genotypes and phenotypes to predi...
Background: the development of next-generation sequencing technologies (NGS) has made the use of who...
Abstract Background: Genomic prediction of breeding values from dense single nucleotide polymorphism...
Genomic prediction exploits single nucleotide polymorphisms (SNPs) across the whole genome for predi...
We propose a novel model (BayesN) for genomic prediction, where multiple markers in a small segment ...
Genomic prediction estimates breeding values by exploiting linkage disequilibrium (LD) between quant...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Background Genomic prediction requires estimation of variances of effects of single nucleotide polym...
Due to the advancement in high throughput technology, single nucleotide polymorphism (SNP) is routin...
Genomic prediction estimates breeding values by exploiting linkage disequilibrium (LD) between quant...
The prediction of complex or quantitative traits from single nucleotide polymorphism (SNP) genotypes...
BACKGROUND: Genomic prediction of breeding values from dense single nucleotide polymorphisms (SNP) g...
Background: Dense SNP genotypes are often combined with complex trait phenotypes to map causal varia...
AbstractThis study investigated the effect on the reliability of genomic prediction when a small num...
Genomic prediction uses a reference population of animals with SNP genotypes and phenotypes to predi...
Background: the development of next-generation sequencing technologies (NGS) has made the use of who...
Abstract Background: Genomic prediction of breeding values from dense single nucleotide polymorphism...