Genotype-environment interactions (GEI) limit genetic gain for complex traits such as tolerance to drought. Characterization of the crop environment is an important step in understanding GEI. A modelling approach is proposed here to characterize broadly (large geographic area, long-term period) and locally (field experiment) drought-related environmental stresses, which enables breeders to analyse their experimental trials with regard to the broad population of environments that they target. Water-deficit patterns experienced by wheat crops were determined for drought-prone north-eastern Australia, using the APSIM crop model to account for the interactions of crops with their environment (e.g. feedback of plant growth on water depletion). S...
International audienceWheat (Triticum aestivum L.) is the most widely cultivated crop worldwide and ...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...
Genotype-environment interactions (GEI) limit genetic gain for complex traits such as tolerance to d...
Genotype–environment interactions (GEI) limit genetic gain for complex traits such as tolerance to d...
Plant response to drought is complex, so that traits adapted to a specific drought type can confer d...
* Plant response to drought is complex, so that traits adapted to a specific drought type can confer...
* Plant response to drought is complex, so that traits adapted to a specific drought type can confer...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
Crop simulation models of plant processes capture the biological interactions between the sensing of...
International audienceIncreasing attention is being paid to environment characterisation as a means ...
Yield is a function of environmental quality and the sensitivity with which genotypes react to that....
International audienceWheat (Triticum aestivum L.) is the most widely cultivated crop worldwide and ...
International audienceWheat (Triticum aestivum L.) is the most widely cultivated crop worldwide and ...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...
Genotype-environment interactions (GEI) limit genetic gain for complex traits such as tolerance to d...
Genotype–environment interactions (GEI) limit genetic gain for complex traits such as tolerance to d...
Plant response to drought is complex, so that traits adapted to a specific drought type can confer d...
* Plant response to drought is complex, so that traits adapted to a specific drought type can confer...
* Plant response to drought is complex, so that traits adapted to a specific drought type can confer...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
The challenge of predicting genotype-by-environment interactions requires that both genotypes and en...
Crop simulation models of plant processes capture the biological interactions between the sensing of...
International audienceIncreasing attention is being paid to environment characterisation as a means ...
Yield is a function of environmental quality and the sensitivity with which genotypes react to that....
International audienceWheat (Triticum aestivum L.) is the most widely cultivated crop worldwide and ...
International audienceWheat (Triticum aestivum L.) is the most widely cultivated crop worldwide and ...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...
Availability of water for plant growth is a key factor determining plant distribution in natural eco...