Plants under water deficit reduce leaf growth, thereby reducing transpiration rate at the expense of reduced photosynthesis. The objective of this work was to analyse the response of leaf growth to water deficit in several sunflower genotypes in order to identify and quantitatively describe sources of genetic variability for this trait that could be used to develop crop varieties adapted to specific scenarios. The genetic variability of the response of leaf growth to water deficit was assessed among 18 sunflower (Helianthus annuus L.) inbred lines representing a broad range of genetic diversity. Plants were subjected to long-term, constant-level, water-deficit treatments, and the response to water deficit quantified by means of growth model...
Maintenance of expansive growth under water deficit has been selected as a key target trait of DROPS...
Leaf senescence is a complex mechanism ruled by multiple genetic and environmental variables that af...
With climate change and an ever-increasing human population threatening food security, developing a ...
Genetic variability for leaf growth rate and duration under water deficit in sunflower: analysis of ...
Increased transpiration efficiency (the ratio of biomass to water transpired, TE) could lead to incr...
This article presents experimental data describing the physiology and morphology of sunflower plants...
The goal of the present research work was to identify quantitative trait loci (QTLs) involved in the...
As in several regions where sunflower production has moved to areas with limiting water availability...
The goal of the present research work was to identify quantitative trait loci (QTLs) involved in the...
Water stress is likely the most important factor that adversely affects plant growth and development...
<div><p>High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and ...
Implementing appropriate breeding strategies for sunflower, alongside dependable information on heri...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
With the aim to study variability in genes involved in ecological adaptations, we have analysed sequ...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
Maintenance of expansive growth under water deficit has been selected as a key target trait of DROPS...
Leaf senescence is a complex mechanism ruled by multiple genetic and environmental variables that af...
With climate change and an ever-increasing human population threatening food security, developing a ...
Genetic variability for leaf growth rate and duration under water deficit in sunflower: analysis of ...
Increased transpiration efficiency (the ratio of biomass to water transpired, TE) could lead to incr...
This article presents experimental data describing the physiology and morphology of sunflower plants...
The goal of the present research work was to identify quantitative trait loci (QTLs) involved in the...
As in several regions where sunflower production has moved to areas with limiting water availability...
The goal of the present research work was to identify quantitative trait loci (QTLs) involved in the...
Water stress is likely the most important factor that adversely affects plant growth and development...
<div><p>High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and ...
Implementing appropriate breeding strategies for sunflower, alongside dependable information on heri...
International audienceHigh water use efficiency (WUE) can be achieved by coordination of biomass acc...
With the aim to study variability in genes involved in ecological adaptations, we have analysed sequ...
High water use efficiency (WUE) can be achieved by coordination of biomass accumulation and water co...
Maintenance of expansive growth under water deficit has been selected as a key target trait of DROPS...
Leaf senescence is a complex mechanism ruled by multiple genetic and environmental variables that af...
With climate change and an ever-increasing human population threatening food security, developing a ...