A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate genetic model is presented. To accommodate a multi-environment analysis, the size of a QTL effect is assumed to be a random effect. The approach results in a multiplicative mixed model for QTL × environment interaction of the factor analytic type. The full genetic model may also include a factor analytic model for the residual genotype × environment interaction, whereas the environmental model for the non-genetic variation involves local, global, and extraneous variation. The approach is used to determine QTLs for yield in the Arapiles × Franklin doubled haploid population of the National Barley Molecular Marker Program. Analysis leads to th...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
Complex quantitative traits of plants as measured on collections of genotypes across multiple enviro...
Complex quantitative traits of plants as measured on collections of genotypes across multiple enviro...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
The advent of DNA-marker technology has made the detection of quantitative trait loci (QTLs) a routi...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
In the practical ‘Single Trait QTL mapping ’ we have discussed the detection of QTLs in the simplest...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
QTL mapping methods for complex traits are challenged by new developments in marker technology, phen...
Complex quantitative traits of plants as measured on collections of genotypes across multiple enviro...
Complex quantitative traits of plants as measured on collections of genotypes across multiple enviro...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
The advent of DNA-marker technology has made the detection of quantitative trait loci (QTLs) a routi...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
In the practical ‘Single Trait QTL mapping ’ we have discussed the detection of QTLs in the simplest...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...