Abstract Recent predictions on climate change indicate that high temperature episodes are expected to impact rice production and productivity worldwide. The present investigation was undertaken to assess the yield stability of 72 rice hybrids and their parental lines across three temperature regimes over two consecutive dry seasons using the additive main effect and multiplicative interaction (AMMI), genotype and genotype × environment interaction (GGE) stability model analysis. The combined ANOVA revealed that genotype × environment interaction (GEI) were significant due to the linear component for most of the traits studied. The AMMI and GGE biplot explained 57.2% and 69% of the observed genotypic variation for grain yield, respectively. ...
Genotype-environment interactions through different stability parameters and performance traits of f...
Optimum growing temperature is necessary for maximum yield-potential in any crop. The global atmosph...
Not AvailableRice grows mostly in tropical and subtropical regions, but it’s very sensitive to highe...
Recent predictions on climate change indicate that high temperature episodes are expected to impact ...
Low temperature is one of the main environmental constraints for rice (Oryza sativa L.) grain produc...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Upland rice production has world-wide the largest potential for increasing area under production and...
Abstract Heat events during the reproductive stages of rice plants induce great yield losses. Cultiv...
In any breeding program, it is necessary to screen and identify phenotypically stable genotypes that...
Perennial grains have been proposed to stabilise fragile lands while contributing grain and grazing ...
Multi-environmental yield trials is vital in assessing the newly developed rice genotypes for its ad...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Identification of highly performing varieties under Senegalese environment is crucial to sustain ric...
Rising global mean temperatures open opportunities in high‐altitude production systems for temperatu...
Grain yield in any given environment is determined by yield components developed at different phenop...
Genotype-environment interactions through different stability parameters and performance traits of f...
Optimum growing temperature is necessary for maximum yield-potential in any crop. The global atmosph...
Not AvailableRice grows mostly in tropical and subtropical regions, but it’s very sensitive to highe...
Recent predictions on climate change indicate that high temperature episodes are expected to impact ...
Low temperature is one of the main environmental constraints for rice (Oryza sativa L.) grain produc...
Genotypes evaluation for stability and high yielding in rice is an important factor for sustainable ...
Upland rice production has world-wide the largest potential for increasing area under production and...
Abstract Heat events during the reproductive stages of rice plants induce great yield losses. Cultiv...
In any breeding program, it is necessary to screen and identify phenotypically stable genotypes that...
Perennial grains have been proposed to stabilise fragile lands while contributing grain and grazing ...
Multi-environmental yield trials is vital in assessing the newly developed rice genotypes for its ad...
Determination of the genotype x environment interaction (GEI) and stability of upland rice varieties...
Identification of highly performing varieties under Senegalese environment is crucial to sustain ric...
Rising global mean temperatures open opportunities in high‐altitude production systems for temperatu...
Grain yield in any given environment is determined by yield components developed at different phenop...
Genotype-environment interactions through different stability parameters and performance traits of f...
Optimum growing temperature is necessary for maximum yield-potential in any crop. The global atmosph...
Not AvailableRice grows mostly in tropical and subtropical regions, but it’s very sensitive to highe...