One hundred twenty six doubled-haploid (DH) rice lines were evaluated in nine diverse Asian environments to reveal the genetic basis of genotype×environment interactions (GEI) for plant height (PH) and heading date (HD). A subset of lines was also evaluated in four water-limited environments, where the environmental basis of G×E could be more precisely defined. Responses to the environments were resolved into individual QTL×environment interactions using replicated phenotyping and the mixed linear-model approach. A total of 37 main-effect QTLs and 29 epistatic QTLs were identified. On average, these QTLs were detectable in 56% of the environments. When detected in multiple environments, the main effects of most QTLs were consistent in direc...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...
Abstract Immortalized F2 population in rice was constructed by random mating among recombinant inbre...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...
One hundred twenty six doubled-haploid (DH) rice lines were evaluated in nine diverse Asian environm...
To understand the genetic basis of genotype by environment (GE) interaction associated with quantita...
QTLs for quantitative traits are influenced by genetic background (GB) and environment. Identificati...
AbstractQTLs for quantitative traits are influenced by genetic background (GB) and environment. Iden...
Rice double-haploid (DH) lines of an indica and japonica cross were grown at nine different location...
QTLs for heading date of rice (Oryza sativa L.) with additive, epistatic, and QTL × environment (QE)...
Use of DNA-based markers can accelerate cultivar development in variable cultivation environments si...
Quantitative trait loci (QTL) for yield components were identified based on an RFLP map from a doubl...
Understanding the genetic and environmental basis of genotype × environment interaction (G×E) is of ...
Understanding the genetic and environmental basis of genotype · environment interaction (G·E) is of ...
Addicive effects, additive by additive epistatic effects, and their environmental interactions of QT...
The objective of this study is to identify main-effect QTLs, epistatic QTLs, and the interactions be...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...
Abstract Immortalized F2 population in rice was constructed by random mating among recombinant inbre...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...
One hundred twenty six doubled-haploid (DH) rice lines were evaluated in nine diverse Asian environm...
To understand the genetic basis of genotype by environment (GE) interaction associated with quantita...
QTLs for quantitative traits are influenced by genetic background (GB) and environment. Identificati...
AbstractQTLs for quantitative traits are influenced by genetic background (GB) and environment. Iden...
Rice double-haploid (DH) lines of an indica and japonica cross were grown at nine different location...
QTLs for heading date of rice (Oryza sativa L.) with additive, epistatic, and QTL × environment (QE)...
Use of DNA-based markers can accelerate cultivar development in variable cultivation environments si...
Quantitative trait loci (QTL) for yield components were identified based on an RFLP map from a doubl...
Understanding the genetic and environmental basis of genotype × environment interaction (G×E) is of ...
Understanding the genetic and environmental basis of genotype · environment interaction (G·E) is of ...
Addicive effects, additive by additive epistatic effects, and their environmental interactions of QT...
The objective of this study is to identify main-effect QTLs, epistatic QTLs, and the interactions be...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...
Abstract Immortalized F2 population in rice was constructed by random mating among recombinant inbre...
The biomass yield (plant weight) of rice fluctuates from year to year. In a previous study, we demon...