DATA for the study. Multi-Environment Trials (MET) are conventionally used to evaluate varietal performance prior to national yield trials, but the accuracy of MET is constrained by the number of test environments. A modeling approach was innovated to evaluate varietal performance in a large number of environments using the rice model ORYZA (v3). Modeled yields representing genotype by environment interactions (GEI) were used to classify the target population of environments (TPE) and analyze varietal yield and yield stability. Eight Green Super Rice (GSR) and three check varieties were evaluated across 3796 environments and 14 seasons in Southern Asia. Based on drought stress imposed on rainfed rice, environments were classified into n...
Rice yield is the result of the interaction between genotype (cultivar characteristics), environment...
Multi-environmental yield trials is vital in assessing the newly developed rice genotypes for its ad...
Genotype by environment (G×E) interactions for grain yield were investigated in 14 rice genotypes ac...
Multi-Environment Trials (MET) are conventionally used to evaluate varietal performance prior to nat...
Breeding line selection with conventional field methods is limited by time, cost, and appropriate en...
Sixteen genotypes of rice (Oryza sativa L.) were evaluated during 2008 and 2009 growing seasons at t...
Multi-environment trials (METs) are essential in plant breeding programs to evaluate crop productivi...
Ten upland New Rice for Africa (NERICA) and three upland non-NERICA rice genotypes were evaluated at...
Ten upland New Rice for Africa (NERICA) and three upland non-NERICA rice genotypes were evaluated at...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Low temperature is one of the main environmental constraints for rice (Oryza sativa L.) grain produc...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Published online: 12 Aug 2022Determination of the genotype x environment interaction (GEI) and stabi...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Rice yield is the result of the interaction between genotype (cultivar characteristics), environment...
Rice yield is the result of the interaction between genotype (cultivar characteristics), environment...
Multi-environmental yield trials is vital in assessing the newly developed rice genotypes for its ad...
Genotype by environment (G×E) interactions for grain yield were investigated in 14 rice genotypes ac...
Multi-Environment Trials (MET) are conventionally used to evaluate varietal performance prior to nat...
Breeding line selection with conventional field methods is limited by time, cost, and appropriate en...
Sixteen genotypes of rice (Oryza sativa L.) were evaluated during 2008 and 2009 growing seasons at t...
Multi-environment trials (METs) are essential in plant breeding programs to evaluate crop productivi...
Ten upland New Rice for Africa (NERICA) and three upland non-NERICA rice genotypes were evaluated at...
Ten upland New Rice for Africa (NERICA) and three upland non-NERICA rice genotypes were evaluated at...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Low temperature is one of the main environmental constraints for rice (Oryza sativa L.) grain produc...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Published online: 12 Aug 2022Determination of the genotype x environment interaction (GEI) and stabi...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Rice yield is the result of the interaction between genotype (cultivar characteristics), environment...
Rice yield is the result of the interaction between genotype (cultivar characteristics), environment...
Multi-environmental yield trials is vital in assessing the newly developed rice genotypes for its ad...
Genotype by environment (G×E) interactions for grain yield were investigated in 14 rice genotypes ac...