Our understanding of plant growth in response to nitrogen (N) supply is mainly based on studies of mutants and transformants. This study explored the natural variability of Arabidopsis thaliana first to find out its global response to N availability and secondly to characterize the plasticity for growth and N metabolism among 23 genetically distant accessions under normal (N+), limited (N–), and starved (N0) N supplies. Plant growth was estimated by eight morphological traits characterizing shoot and root growth and 10 metabolic parameters that represented N and carbon metabolism. Most of the studied traits showed a large variation linked to genotype and nutrition. Furthermore, Arabidopsis growth was coordinated by master traits such as the...
A positive correlation was found between root system size and high-affinity nitrate uptake in a core...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Nitrogen fertilization increases crop yield but excessive nitrate use can be a major environmental p...
The increase of environmental pressures and EEC control regulations lead to the development of low i...
Abstract Natural accessions of Arabidopsis thaliana differ in their growth and development, but also...
We have established a simple soil-based experimental system that allows a small and sustained restri...
Root system architecture (RSA) plays a crucial role in nutrient and water uptake in plants. RSA can ...
Nitrogen (N) is central for plant growth, and metabolic plasticity can provide a strategy to respond...
Nitrogen (N) is an abundant element on earth. It is a crucial macro-element for plant growth and dev...
International audienceAbstract The role of root phenes in nitrogen (N) acquisition and biomass produ...
International audienceAbstract The role of root phenes in nitrogen (N) acquisition and biomass produ...
A positive correlation was found between root system size and high-affinity nitrate uptake in a core...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
Nitrogen fertilization increases crop yield but excessive nitrate use can be a major environmental p...
The increase of environmental pressures and EEC control regulations lead to the development of low i...
Abstract Natural accessions of Arabidopsis thaliana differ in their growth and development, but also...
We have established a simple soil-based experimental system that allows a small and sustained restri...
Root system architecture (RSA) plays a crucial role in nutrient and water uptake in plants. RSA can ...
Nitrogen (N) is central for plant growth, and metabolic plasticity can provide a strategy to respond...
Nitrogen (N) is an abundant element on earth. It is a crucial macro-element for plant growth and dev...
International audienceAbstract The role of root phenes in nitrogen (N) acquisition and biomass produ...
International audienceAbstract The role of root phenes in nitrogen (N) acquisition and biomass produ...
A positive correlation was found between root system size and high-affinity nitrate uptake in a core...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...
International audienceAbstract Our understanding of the interaction of carbon (C) metabolism with ni...