Roots perform vital roles for adaptation and productivity under water‐deficit stress, even though their specific functions are poorly understood. In this study, the genetic control of the nodal‐root architectural and anatomical response to water deficit were investigated among diverse spring barley accessions. Water deficit induced substantial variations in the nodal root traits. The cortical, stele, and total root cross‐sectional areas of the main‐shoot nodal roots decreased under water deficit, but increased in the tiller nodal roots. Root xylem density and arrested nodal roots increased under water deficit, with the formation of root suberization/lignification and large cortical aerenchyma. Genome‐wide association study implicated 11 QTL...
International audienceOsmotic adjustment (OA) was previously demonstrated to be an important adaptiv...
The root system is a key component for plant survival and productivity. In particular, under stress ...
A) The significant SNPs (338 SNPs, -log10≥3) associated with all traits under control and drought st...
Water availability is a major limiting factor for crop production, making drought adaptation and its...
Water deficit is one of the major limitations to food production worldwide and most climate change s...
Background: Adaptation to drought-prone environments requires robust root architecture. Genotypes wi...
Waterlogging is an environmental stress, which severely affects barley growth and development. Limit...
Knowledge about the genetic control of root development and architecture is lagging behind others pl...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
Breeding new crop cultivars with efficient root systems carries great potential to enhance resource ...
Breeding new crop cultivars with efficient root systems carries great potential to enhance resource ...
Phenotyping is the current bottleneck to accelerate plant breeding (Fiorani and Schurr, 2013), and n...
International audienceOsmotic adjustment (OA) was previously demonstrated to be an important adaptiv...
The root system is a key component for plant survival and productivity. In particular, under stress ...
A) The significant SNPs (338 SNPs, -log10≥3) associated with all traits under control and drought st...
Water availability is a major limiting factor for crop production, making drought adaptation and its...
Water deficit is one of the major limitations to food production worldwide and most climate change s...
Background: Adaptation to drought-prone environments requires robust root architecture. Genotypes wi...
Waterlogging is an environmental stress, which severely affects barley growth and development. Limit...
Knowledge about the genetic control of root development and architecture is lagging behind others pl...
International audienceWater stress is recognized as the most severe abiotic stress for agricultural ...
Breeding new crop cultivars with efficient root systems carries great potential to enhance resource ...
Breeding new crop cultivars with efficient root systems carries great potential to enhance resource ...
Phenotyping is the current bottleneck to accelerate plant breeding (Fiorani and Schurr, 2013), and n...
International audienceOsmotic adjustment (OA) was previously demonstrated to be an important adaptiv...
The root system is a key component for plant survival and productivity. In particular, under stress ...
A) The significant SNPs (338 SNPs, -log10≥3) associated with all traits under control and drought st...