Genotype-by-environment (G × E) interaction (GEI) and quantitative trait locus (QTL)-by-environment interaction (QEI) are common phenomena in multiple-environment trials and represent a major challenge to breeders. The additive main effects and multiplicative interaction (AMMI) model is a widely used tool for the analysis of multiple-environment trials, where the data are represented by a two-way table of G × E means. For complete tables, least squares estimation for the AMMI model is equivalent to fitting an additive two-way ANOVA model for the main effects and applying a singular value decomposition to the interaction residuals, thereby implicitly assuming equal weights for all G × E means. However, multiple-environment data with strong G...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...
The genotype by environment interaction (GEI) has an influence on the selection and recommendation o...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Genotype-by-environment (G × E) interaction (GEI) and quantitative trait locus (QTL)-by-environment ...
Abstract: The objective of this work was to propose a weighting scheme for the additive main effects...
In multi-environmental trials it is common for the genetic characteristics of the cultivars to be in...
Understanding the implication of genotype-by-environment (GE) interaction structure is an important ...
As características genéticas das culturas agrícolas podem ser influenciadas pelo ambiente, interferi...
In the practical ‘Single Trait QTL mapping ’ we have discussed the detection of QTLs in the simplest...
ABSTRACT environments where the genotypes are tested. Presence of GEI rules out simple interpretativ...
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 study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...
The genotype by environment interaction (GEI) has an influence on the selection and recommendation o...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Genotype-by-environment (G × E) interaction (GEI) and quantitative trait locus (QTL)-by-environment ...
Abstract: The objective of this work was to propose a weighting scheme for the additive main effects...
In multi-environmental trials it is common for the genetic characteristics of the cultivars to be in...
Understanding the implication of genotype-by-environment (GE) interaction structure is an important ...
As características genéticas das culturas agrícolas podem ser influenciadas pelo ambiente, interferi...
In the practical ‘Single Trait QTL mapping ’ we have discussed the detection of QTLs in the simplest...
ABSTRACT environments where the genotypes are tested. Presence of GEI rules out simple interpretativ...
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 study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
A new approach for multi-environment quantitative trait locus (QTL) analysis based on an appropriate...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...
The genotype by environment interaction (GEI) has an influence on the selection and recommendation o...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...