An original approach to develop sustainable agriculture with less nitrogen fertilizer inputs is to tackle the cross-talk between nitrogen nutrition and plant growth regulators. In particular the gaseous hormone, ethylene, is a prime target for that purpose. The variation of ethylene production in natural accessions of the model species Arabidopsis thaliana was explored in response to the nitrate supply. Ethylene was measured with a laser-based photoacoustic detector. First, experimental conditions were established with Columbia-0 (Col-0) accession, which was grown in vitro on horizontal plates across a range of five nitrate concentrations (0.5, 1, 2.5, 5 and 10 mM). The concentrations of 1 and 10 mM nitrate were retained for further charact...
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...
Nineteen Arabidopsis accessions grown at low (LOW N) and high (HIGH N) nitrate supplies were labelle...
An original approach to develop sustainable agriculture with less nitrogen fertilizer inputs is to t...
An original approach to develop sustainable agriculture with less nitrogen fertilizer inputs is to t...
Contains fulltext : 156865.pdf (publisher's version ) (Open Access
Abstract Natural accessions of Arabidopsis thaliana differ in their growth and development, but also...
Our understanding of plant growth in response to nitrogen (N) supply is mainly based on studies of m...
Plants often experience varying soil nitrogen levels during their life cycle, and adjust growth and ...
Plants often experience varying soil nitrogen levels during their life cycle, and adjust growth and ...
Nitrogen (N) is an abundant element on earth. It is a crucial macro-element for plant growth and dev...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
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...
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...
Nineteen Arabidopsis accessions grown at low (LOW N) and high (HIGH N) nitrate supplies were labelle...
An original approach to develop sustainable agriculture with less nitrogen fertilizer inputs is to t...
An original approach to develop sustainable agriculture with less nitrogen fertilizer inputs is to t...
Contains fulltext : 156865.pdf (publisher's version ) (Open Access
Abstract Natural accessions of Arabidopsis thaliana differ in their growth and development, but also...
Our understanding of plant growth in response to nitrogen (N) supply is mainly based on studies of m...
Plants often experience varying soil nitrogen levels during their life cycle, and adjust growth and ...
Plants often experience varying soil nitrogen levels during their life cycle, and adjust growth and ...
Nitrogen (N) is an abundant element on earth. It is a crucial macro-element for plant growth and dev...
Mineral nutrient availability and in particular nitrogen abundance has a huge impact on plant fitnes...
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...
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...
Nineteen Arabidopsis accessions grown at low (LOW N) and high (HIGH N) nitrate supplies were labelle...