An understanding of the genetic and environmental basis of genotype2environment interaction (GEI) is of fundamental importance in plant breeding. In mapping quantitative trait loci (QTLs), suitable genetic populations are grown in different environments causing QTLs2environment interaction (QEI). The main objective of the present study is to show how Partial Least Squares (PLS) regression and Factorial Regression (FR) models using genetic markers and environmental covariables can be used for studying QEI related to GEI. Biomass data were analyzed from a multi-environment trial consisting of 161 lines from a F3:4 maize segregating population originally created with the purpose of mapping QTLs loci and investigating adaptation differences bet...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Most maize yield variations are explained by changes in the number of established kernels. Kernel nu...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...
An understanding of the genetic and environmental basis of genotype2environment interaction (GEI) is...
An understanding of the genetic and environmental basis of genotype´environment interaction (GEI) ...
The vast majority of reported QTL mapping for maize (Zea mays L.) traits are from temperate germplas...
The study of QTL x environment interaction (QEI) is important for understanding genotype x environme...
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...
Molecular-marker loci were used to investigate the adaptation differences between highland and lowla...
Genotype-by-environment interactions are a significant challenge for crop breeding as well as being ...
Understanding the genetic and environmental basis of genotype × environment interaction (G×E) is of ...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
Understanding the genetic and environmental basis of genotype · environment interaction (G·E) is of ...
Abstract: Historically in plant breeding a large number of statistical models has been developed and...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Most maize yield variations are explained by changes in the number of established kernels. Kernel nu...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...
An understanding of the genetic and environmental basis of genotype2environment interaction (GEI) is...
An understanding of the genetic and environmental basis of genotype´environment interaction (GEI) ...
The vast majority of reported QTL mapping for maize (Zea mays L.) traits are from temperate germplas...
The study of QTL x environment interaction (QEI) is important for understanding genotype x environme...
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...
Molecular-marker loci were used to investigate the adaptation differences between highland and lowla...
Genotype-by-environment interactions are a significant challenge for crop breeding as well as being ...
Understanding the genetic and environmental basis of genotype × environment interaction (G×E) is of ...
The study of the phenotypic responses of a set of genotypes in their dependence on the environment h...
Understanding the genetic and environmental basis of genotype · environment interaction (G·E) is of ...
Abstract: Historically in plant breeding a large number of statistical models has been developed and...
We introduce in this chapter a series of linear and bilinear models for the study of genotype by env...
Most maize yield variations are explained by changes in the number of established kernels. Kernel nu...
Genotype-by-environment interaction (GEI) is an important phenomenon in plant breeding. This paper p...