Extensive and deep root systems have been recognized as one of the most important traits for improving chickpea (Cicer arietinum L.) productivity under progressively receding soil moisture conditions. However, available information on the range of variation for root traits is still limited. Genetic variability for the root traits was investigated using a cylinder culture system during two consecutive growth seasons in the mini-core germplasm collection of ICRISAT plus several wild relatives of chickpea. The largest genetic variability was observed at 35 days after sowing for root length density (RLD) (heritability, h 2 = 0.51 and 0.54) across seasons, and followed by the ratio of plant dry weight to root length density with h 2 of 0.37 an...
Root systems of various chickpea genotypes were studied over time and in diverse environments, - var...
Drought, salinity, and extreme variations in temperature are the major abiotic constraints to chick...
Chickpeas are often grown under receding soil moisture and suffer ~50% yield losses due to drought s...
Chickpea (Cicer arietinum L.) is a major grain legume cultivated largely on residual soil moisture i...
Deep and prolific root systems have been associated with enhanced avoidance of terminal drought stre...
Chickpea (Cicer arietinum L.), an important food legume grown in the semi-arid tropical and Mediterr...
Terminal drought is one of the major causes of yield losses in chickpea (Cicer arietinum L.) and the...
Chickpea (Cicer arietinum L.), an important food legume grown in the semi-arid tropical and Mediterr...
The productivity of chickpea (C. arietinum L.) in the arid and semi-arid regions is constrained due ...
Chickpea, the second most important legume crop, suffers major yield losses by terminal drought stre...
Terminal drought stress is one of the most serious constraints in chickpea production in the semiari...
AbstractChickpea, the second most important legume crop, suffers major yield losses by terminal drou...
Root systems of various chickpea genotypes were studied over time and in diverse environments, – var...
Root structure modification can improve important agronomic traits including yield, drought toleranc...
The importance of root systems in acquiring water has long been recognized as crucial to cope with d...
Root systems of various chickpea genotypes were studied over time and in diverse environments, - var...
Drought, salinity, and extreme variations in temperature are the major abiotic constraints to chick...
Chickpeas are often grown under receding soil moisture and suffer ~50% yield losses due to drought s...
Chickpea (Cicer arietinum L.) is a major grain legume cultivated largely on residual soil moisture i...
Deep and prolific root systems have been associated with enhanced avoidance of terminal drought stre...
Chickpea (Cicer arietinum L.), an important food legume grown in the semi-arid tropical and Mediterr...
Terminal drought is one of the major causes of yield losses in chickpea (Cicer arietinum L.) and the...
Chickpea (Cicer arietinum L.), an important food legume grown in the semi-arid tropical and Mediterr...
The productivity of chickpea (C. arietinum L.) in the arid and semi-arid regions is constrained due ...
Chickpea, the second most important legume crop, suffers major yield losses by terminal drought stre...
Terminal drought stress is one of the most serious constraints in chickpea production in the semiari...
AbstractChickpea, the second most important legume crop, suffers major yield losses by terminal drou...
Root systems of various chickpea genotypes were studied over time and in diverse environments, – var...
Root structure modification can improve important agronomic traits including yield, drought toleranc...
The importance of root systems in acquiring water has long been recognized as crucial to cope with d...
Root systems of various chickpea genotypes were studied over time and in diverse environments, - var...
Drought, salinity, and extreme variations in temperature are the major abiotic constraints to chick...
Chickpeas are often grown under receding soil moisture and suffer ~50% yield losses due to drought s...