Similar Items: Predicting zinc-enhanced maize hybrid performance under stress conditions
- Genotype x environment interaction and yield stability of normal and biofortified maize inbred lines in stress and non-stress environments
- Combining ability and testcross performance of multi-nutrient maize under stress and non-stress environments
- Genetic variation of zinc and iron concentration in normal, provitamin A and quality protein maize under stress and non-stress conditions
- Nine promising heat stress tolerant maize inbred lines with desirable secondary traits and grain yield under severe heat stress
- Genetic analysis of grain yield and other traits of early maturing maize inbreds under drought and wellwatered conditions
- Testcross performance and combining ability of early maturing maize inbreds under multiple-stress environments
Author: Goredema-Matongera, Nakai
- Genotype x environment interaction and yield stability of normal and biofortified maize inbred lines in stress and non-stress environments
- Genetic variation of zinc and iron concentration in normal, provitamin A and quality protein maize under stress and non-stress conditions
- Combining ability and testcross performance of multi-nutrient maize under stress and non-stress environments
- Predicting zinc-enhanced maize hybrid performance under stress conditions
- Genetic trends in the Zimbabwe's national maize breeding program over two decades
Author: Thokozile Ndhlela
- Projecting the contribution of provitamin A maize biofortification and other nutrition interventions to the nutritional adequacy and cost of diets in rural Zimbabwe
- Construction of a generalised farm typology to aid selection, targeting and scaling of onfarm research
- Genotype x environment interaction and yield stability of normal and biofortified maize inbred lines in stress and non-stress environments
- Genetic variation of zinc and iron concentration in normal, provitamin A and quality protein maize under stress and non-stress conditions
- Combining ability and testcross performance of multi-nutrient maize under stress and non-stress environments
- Genetic trends in CIMMYT’s tropical maize breeding pipelines