In the process of introducing cotton cultivars, it is essential to assess their productive behavior for different environments for which they will be recommended. Knowledge of the magnitude of the genotype interaction with environment allows the evaluation of the stability and adaptability of genotypes where one intends to introduce them, in addition to enabling the evaluation of the production potential and possible limitations of each environment. The study was conducted to determine the productivity, genotypic adaptability and genotypic stability of nine cotton cultivars (Gossypium hirsutum) in Mozambique, from 2004 to 2010 growing seasons. The genotypic stability and genotypic adaptability were assessed by Residual Maximum Likelihood (R...
The restricted maximum likelihood/best linear unbiased prediction (REML/BLUP) mixed model method has...
The evaluation of phenotypic characteristics is critical in the selection of top cotton lines. Cotto...
Genomic selection (GS) has successfully been used in plant breeding to improve selection efficiency ...
The expected gains in the productivity and sustainability of cotton cultivars across environmental s...
Seed cotton yield is a trait governed by multiple genes that cause changes in the performance of ge...
Cotton yield and fibre quality parameters are dependent on the environment in which the crop is grow...
The main objective of this study was to identify high-yielding and stable cotton genotypes under nor...
Cotton produces one of the most important textile fibers of the world and has great relevance in the...
Due to importance of the genotype x environment interaction (GE) effects during genetic breeding pro...
A set of 12 cotton genotypes were evaluated during the main growing seasons, from 1985 to 1990 at Ab...
Seed cotton yield is a trait governed by multiple genes that cause changes in the performance of gen...
The harmonic mean of the relative performance of genotypic predicted value (HMRPGV) method has been ...
This research was conducted to study effects of G × E interaction on 38 selected genotypes of cotton...
In cotton breeding programs, it is necessary to identify genotypes with predictable behavior on the...
Plant breeding programs involving a wide range of crop plants routinely practice selection (directly...
The restricted maximum likelihood/best linear unbiased prediction (REML/BLUP) mixed model method has...
The evaluation of phenotypic characteristics is critical in the selection of top cotton lines. Cotto...
Genomic selection (GS) has successfully been used in plant breeding to improve selection efficiency ...
The expected gains in the productivity and sustainability of cotton cultivars across environmental s...
Seed cotton yield is a trait governed by multiple genes that cause changes in the performance of ge...
Cotton yield and fibre quality parameters are dependent on the environment in which the crop is grow...
The main objective of this study was to identify high-yielding and stable cotton genotypes under nor...
Cotton produces one of the most important textile fibers of the world and has great relevance in the...
Due to importance of the genotype x environment interaction (GE) effects during genetic breeding pro...
A set of 12 cotton genotypes were evaluated during the main growing seasons, from 1985 to 1990 at Ab...
Seed cotton yield is a trait governed by multiple genes that cause changes in the performance of gen...
The harmonic mean of the relative performance of genotypic predicted value (HMRPGV) method has been ...
This research was conducted to study effects of G × E interaction on 38 selected genotypes of cotton...
In cotton breeding programs, it is necessary to identify genotypes with predictable behavior on the...
Plant breeding programs involving a wide range of crop plants routinely practice selection (directly...
The restricted maximum likelihood/best linear unbiased prediction (REML/BLUP) mixed model method has...
The evaluation of phenotypic characteristics is critical in the selection of top cotton lines. Cotto...
Genomic selection (GS) has successfully been used in plant breeding to improve selection efficiency ...