Background The selection of hybrids is an essential step in maize breeding. However, evaluating a large number of hybrids in field trials can be extremely costly. However, genomic models can be used to predict the expected performance of un-tested genotypes. Bayesian models offer a very flexible framework for hybrid prediction. The Bayesian methodology can be used with parametric and semi-parametric assumptions for additive and non-additive effects. Furthermore, samples from the posterior distribution of Bayesian models can be used to estimate the variance due to general and specific combining abilities even in cases where additive and non-additive effects are not mutually orthogonal. Also, the use of Bayesian models for analysis and predic...
Genomic prediction (GP) across different populations and environments should be enhanced to increase...
International audienceGenetic admixture, resulting from the recombination between structural groups,...
Genomic selection (GS) is a powerful tool for improving genetic gain in maize breeding. However, its...
Abstract Background The selection of hybrids is an essential step in maize breeding. However, evalua...
Predicting the performance of untested single-cross hybrids through genomic prediction (GP) is highl...
The two most important activities in maize breeding are the development of inbred lines with high va...
Genomic selection has become a reality in plant breeding programs with the reduction in genotyping c...
This dataset encompasses the non-adjusted phenotypes dataset and the genotypic data from 49 maize in...
The usefulness of genomic prediction (GP) for many animal and plant breeding programs has been highl...
Genomic selection has been implemented in several plant and animal breeding programs and it has prov...
Adaptability and stability analysis methods that use a priori information allow identifying and sele...
Prediction of single-cross performance has been a major goal of plant breeders since the beginning o...
Prediction of single-cross performance has been a major goal of plant breeders since the beginning o...
Accurate prediction of the phenotypic performance of a hybrid plant based on the molecular fingerpri...
Phenotyping in multi-environment trials (MET) plays an important role to access the differential res...
Genomic prediction (GP) across different populations and environments should be enhanced to increase...
International audienceGenetic admixture, resulting from the recombination between structural groups,...
Genomic selection (GS) is a powerful tool for improving genetic gain in maize breeding. However, its...
Abstract Background The selection of hybrids is an essential step in maize breeding. However, evalua...
Predicting the performance of untested single-cross hybrids through genomic prediction (GP) is highl...
The two most important activities in maize breeding are the development of inbred lines with high va...
Genomic selection has become a reality in plant breeding programs with the reduction in genotyping c...
This dataset encompasses the non-adjusted phenotypes dataset and the genotypic data from 49 maize in...
The usefulness of genomic prediction (GP) for many animal and plant breeding programs has been highl...
Genomic selection has been implemented in several plant and animal breeding programs and it has prov...
Adaptability and stability analysis methods that use a priori information allow identifying and sele...
Prediction of single-cross performance has been a major goal of plant breeders since the beginning o...
Prediction of single-cross performance has been a major goal of plant breeders since the beginning o...
Accurate prediction of the phenotypic performance of a hybrid plant based on the molecular fingerpri...
Phenotyping in multi-environment trials (MET) plays an important role to access the differential res...
Genomic prediction (GP) across different populations and environments should be enhanced to increase...
International audienceGenetic admixture, resulting from the recombination between structural groups,...
Genomic selection (GS) is a powerful tool for improving genetic gain in maize breeding. However, its...