Shortage of irrigation water at critical growth stages of maize is limiting its production worldwide. Breeding drought-tolerant cultivars is one possible solution while identification of potential genotypes is crucial for genetic improvement. To assess genetic variation for seedling-stage drought tolerance, we tested 40 inbred lines in a completely randomized design under glasshouse conditions. From these, two contrasting inbred lines were used to develop six basic generations (P1, P2, F1, F2, BC1F1, BC2F2). These populations were then evaluated in a triplicated factorial randomized complete block design under non-stressed and drought-stressed conditions. For statistical analyses, a nested block design was employed to ignore the replication...
Drought stress is paramount in limiting worldwide maize (Zea mays L.) production and productivity. I...
Abstract Introduced maize (Zea mays L.) germplasmcan serve as sources of favorable alleles toenhance...
Drought stress is limiting global crop production more seriously than ever because of rapid change...
Shortage of irrigation water at critical growth stages of maize is limiting its production worldwide...
Fifty maize inbred lines were screened at seedling stage under drought and normal conditions for var...
Fifty maize inbred lines collected from different sources were screened at seedling stage for drough...
Significant yield losses in maize (Zea mays L.) from drought are expected to increase with global cl...
Published online: 01 Aug 2018Maize hybrids that are tolerant to drought at the seedling stage are ne...
Drought causes considerable yield reduction in maize (Zea mays L.) grown in the moisture stressed ar...
Maize is known to be susceptible to drought stress, which negatively affects vegetative growth and b...
Grain yield is a complex trait, strongly influenced by the environment: severe losses can be caused ...
Drought is a solemn environmental factor that causes great loss of yield in maize crop. Maize is hig...
Maize breeders consider tolerance to drought as an important criterion in commercial breeding progra...
Current climate change models predict an increased frequency and intensity of drought for much of th...
Most maize production across the globe is rain-fed, and production is set to be negatively impacted ...
Drought stress is paramount in limiting worldwide maize (Zea mays L.) production and productivity. I...
Abstract Introduced maize (Zea mays L.) germplasmcan serve as sources of favorable alleles toenhance...
Drought stress is limiting global crop production more seriously than ever because of rapid change...
Shortage of irrigation water at critical growth stages of maize is limiting its production worldwide...
Fifty maize inbred lines were screened at seedling stage under drought and normal conditions for var...
Fifty maize inbred lines collected from different sources were screened at seedling stage for drough...
Significant yield losses in maize (Zea mays L.) from drought are expected to increase with global cl...
Published online: 01 Aug 2018Maize hybrids that are tolerant to drought at the seedling stage are ne...
Drought causes considerable yield reduction in maize (Zea mays L.) grown in the moisture stressed ar...
Maize is known to be susceptible to drought stress, which negatively affects vegetative growth and b...
Grain yield is a complex trait, strongly influenced by the environment: severe losses can be caused ...
Drought is a solemn environmental factor that causes great loss of yield in maize crop. Maize is hig...
Maize breeders consider tolerance to drought as an important criterion in commercial breeding progra...
Current climate change models predict an increased frequency and intensity of drought for much of th...
Most maize production across the globe is rain-fed, and production is set to be negatively impacted ...
Drought stress is paramount in limiting worldwide maize (Zea mays L.) production and productivity. I...
Abstract Introduced maize (Zea mays L.) germplasmcan serve as sources of favorable alleles toenhance...
Drought stress is limiting global crop production more seriously than ever because of rapid change...