Similar Items: Modeling genetic traits of five common bean (Phaseolus vulgaris) genotypes in multi-location trials
- Development of a QTL-environment-based predictive model for node addition rate in common bean
- A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
- Phenotyping common beans for adaptation to drought: protocol for field evaluation
- Phenotyping common beans for adaptation to drought: protocol for greenhouse evaluation
- Influence of plant density and growth habit of common bean on leaf area development and N accumulation
- Sowing density effect on common bean leaf area development
Author: Clavijo Michelangeli, José A.
- A Predictive Model for Time-to-Flowering in the Common Bean Based on QTL and Environmental Variables
- Development of a QTL-environment-based predictive model for node addition rate in common bean
- Modeling genetic traits of five common bean (Phaseolus vulgaris) genotypes in multi-location trials
- Is nitrogen accumulation in grain legumes responsive to growth or ontogeny?
- Influence of plant density and growth habit of common bean on leaf area development and N accumulation
- Sowing density effect on common bean leaf area development
Author: Boote, Kenneth J.
- Climate change impacts and potential benefits of drought and heat tolerance in chickpea in South Asia and East Africa
- Beangro V1.01 dry bean crop growth simulation model: user's guide
- Regression-based evaluation of ecophysiological models
- Improving crop simulation models to cope with crop responses to drought
- Potential benefits of drought and heat tolerance in groundnut for adaptation to climate change in India and West Africa
- Multimodel ensembles of wheat growth: many models are better than one