The additive main effects and multiplicative interaction (AMMI) model is used to analyse the grain yield data of 13 rice genotypes grown in 12 rainfed lowland rice environments. The trials were organized by the International Network for Genetic Evaluation of Rice in Africa (INGER‐Africa) and conducted in Nigeria. Main effects due to environments (E), genotypes (G) and G × E interaction were found to be significant (P = 0.001). Cross validation analysis suggested that an AMMI model with one interaction principal component axis (IPCA) was most useful predictively, whereas Gollobs' test declared two components, IPCA1 and IPCA2, statistically significant (P = 0.01). The IPCAl, however, accounted for most (47.8%) of the G × E sum of squares. Cor...
In order to identify high yielding and stable short-duration lowland rice genotypes, field experimen...
The AMMI model combines regular analysis of variance for additive main effects with principal compon...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Rice (Oryza sativa L.) is one of the most important cereal crops in the world. India is one of the l...
The additive main effects and multiplicative interaction (AMMI) model was used to analysis the grain...
The problem of genotype-by-environment (G x E) interactions that often complicates the interpretatio...
Multi-locational rice evaluation trials were conducted in six locations across Nigeria to select pro...
Phenotypic stability of 12 rice genotypes for plant height, days to maturity and yield were assessed...
Not AvailableGenotype x environment interaction (GEI) of 42 rice genotypes tested over nine seasons ...
Identification of highly performing varieties under Senegalese environment is crucial to sustain ric...
Superior grain quality is the main goal of rice breeders because of its high commercial value. Progr...
Thirty three maize genotypes including hybrids and pure lines were evaluated to assess the grain yie...
Genotype × environment interactions complicate selection of superior genotypes for narrow and wide a...
Published online: 05 October 2011Multi-environment trials (METs) in West Africa have demonstrated th...
In order to identify high yielding and stable short-duration lowland rice genotypes, field experimen...
The AMMI model combines regular analysis of variance for additive main effects with principal compon...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Rice (Oryza sativa L.) is one of the most important cereal crops in the world. India is one of the l...
The additive main effects and multiplicative interaction (AMMI) model was used to analysis the grain...
The problem of genotype-by-environment (G x E) interactions that often complicates the interpretatio...
Multi-locational rice evaluation trials were conducted in six locations across Nigeria to select pro...
Phenotypic stability of 12 rice genotypes for plant height, days to maturity and yield were assessed...
Not AvailableGenotype x environment interaction (GEI) of 42 rice genotypes tested over nine seasons ...
Identification of highly performing varieties under Senegalese environment is crucial to sustain ric...
Superior grain quality is the main goal of rice breeders because of its high commercial value. Progr...
Thirty three maize genotypes including hybrids and pure lines were evaluated to assess the grain yie...
Genotype × environment interactions complicate selection of superior genotypes for narrow and wide a...
Published online: 05 October 2011Multi-environment trials (METs) in West Africa have demonstrated th...
In order to identify high yielding and stable short-duration lowland rice genotypes, field experimen...
The AMMI model combines regular analysis of variance for additive main effects with principal compon...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...