Covariance functions have been proposed to predict breeding values and genetic (co)variances as a function of phenotypic within herd-year averages (environmental parameters) to include genotype by environment interaction. The objective of this paper was to investigate the influence of definition of environmental parameters and non-random use of sires on expected breeding values and estimated genetic variances across environments. Breeding values were simulated as a linear function of simulated herd effects. The definition of environmental parameters hardly influenced the results. In situations with random use of sires, estimated genetic correlations between the trait expressed in different environments were 0.93, 0.93 and 0.97 while simulat...
In plant breeding, one of the main purpose of multi-environment trial (MET) is to assess the intensi...
Multiple-trait BLUP evaluations of test day records require a large number of genetic parameters. Th...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Covariance functions have been proposed to predict breeding values and genetic (co)variances as a fu...
Covariance functions have been proposed to predict breeding values and genetic (co)variances as a f...
Abstract A progeny test representing the milk yield was simulated to evaluate the effect of heteroge...
A random regression model for the analysis of "repeated " records in animal breeding is described wh...
Genotype by environment interaction can be analyzed by using a multi-trait model in which a trait me...
Breeding programs for different species aim to improve performance by testing members of full-sib (F...
Abstract Background Analysis of data on genotypes with different expression in different environment...
The objective of this research was to compare structured antedependence models (SAD) to random regre...
There is empirical evidence that genotypes differ not only in mean, but also in environmental varian...
Genotype by environment interaction (G × E) and genetic heterogeneity of environmental variance are ...
Our objective was to detect and describe genotype by environment interaction on Nordic dairy cattle ...
This study investigates the estimation of direct and maternal genetic (co)variances, accounting for ...
In plant breeding, one of the main purpose of multi-environment trial (MET) is to assess the intensi...
Multiple-trait BLUP evaluations of test day records require a large number of genetic parameters. Th...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Covariance functions have been proposed to predict breeding values and genetic (co)variances as a fu...
Covariance functions have been proposed to predict breeding values and genetic (co)variances as a f...
Abstract A progeny test representing the milk yield was simulated to evaluate the effect of heteroge...
A random regression model for the analysis of "repeated " records in animal breeding is described wh...
Genotype by environment interaction can be analyzed by using a multi-trait model in which a trait me...
Breeding programs for different species aim to improve performance by testing members of full-sib (F...
Abstract Background Analysis of data on genotypes with different expression in different environment...
The objective of this research was to compare structured antedependence models (SAD) to random regre...
There is empirical evidence that genotypes differ not only in mean, but also in environmental varian...
Genotype by environment interaction (G × E) and genetic heterogeneity of environmental variance are ...
Our objective was to detect and describe genotype by environment interaction on Nordic dairy cattle ...
This study investigates the estimation of direct and maternal genetic (co)variances, accounting for ...
In plant breeding, one of the main purpose of multi-environment trial (MET) is to assess the intensi...
Multiple-trait BLUP evaluations of test day records require a large number of genetic parameters. Th...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...