International audienceSenescence determines plant organ lifespan depending on aging and environmental cues. During the endosymbiotic interaction with rhizobia, legume plants develop a specific organ, the root nodule, which houses nitrogen (N)-fixing bacteria. Unlike earlier processes of the legume-rhizobium interaction (nodule formation, N fixation), mechanisms controlling nodule senescence remain poorly understood. To identify nodule senescence-associated genes, we performed a dual plant-bacteria RNA sequencing approach on Medicago truncatula-Sinorhizobium meliloti nodules having initiated senescence either naturally (aging) or following an environmental trigger (nitrate treatment or salt stress). The resulting data allowed the identificat...
Use of chemical nitrogen fertilizers has environmental repercussions such as global warming, soil co...
The goal of this thesis is to study cellular senescence with the use of the determinate nodule of so...
International audienceRhizobia and legumes establish symbiotic interactions leading to the productio...
International audienceSenescence determines plant organ lifespan depending on aging and environmenta...
Rhizobia reside as symbiosomes in the infected cells of legume nodules to fix atmospheric nitrogen. ...
Rhizobia reside as symbiosomes in the infected cells of legume nodules to fix atmospheric nitrogen. ...
In the legume-rhizobia symbiosis, atmospheric dinitrogen (N2) fixation by rhizobia takes place in a ...
International audienceMedicago (Medicago truncatula) establishes a symbiosis with the rhizobia Sinor...
This work consists of a fundamental study of nodule senescence in indeterminate nodules of Medicago ...
Thanks to the symbiotic interaction with rhizobia many legumes are important natural fertilizers and...
Here, for the first time, a comprehensive transcriptomics study is presented of leaf senescence in t...
International audienceResearch on legume nodule development has contributed greatly to our current u...
The symbiotic interaction between legumes and Rhizobiaceae leads to the formation of new root organs...
Use of chemical nitrogen fertilizers has environmental repercussions such as global warming, soil co...
The goal of this thesis is to study cellular senescence with the use of the determinate nodule of so...
International audienceRhizobia and legumes establish symbiotic interactions leading to the productio...
International audienceSenescence determines plant organ lifespan depending on aging and environmenta...
Rhizobia reside as symbiosomes in the infected cells of legume nodules to fix atmospheric nitrogen. ...
Rhizobia reside as symbiosomes in the infected cells of legume nodules to fix atmospheric nitrogen. ...
In the legume-rhizobia symbiosis, atmospheric dinitrogen (N2) fixation by rhizobia takes place in a ...
International audienceMedicago (Medicago truncatula) establishes a symbiosis with the rhizobia Sinor...
This work consists of a fundamental study of nodule senescence in indeterminate nodules of Medicago ...
Thanks to the symbiotic interaction with rhizobia many legumes are important natural fertilizers and...
Here, for the first time, a comprehensive transcriptomics study is presented of leaf senescence in t...
International audienceResearch on legume nodule development has contributed greatly to our current u...
The symbiotic interaction between legumes and Rhizobiaceae leads to the formation of new root organs...
Use of chemical nitrogen fertilizers has environmental repercussions such as global warming, soil co...
The goal of this thesis is to study cellular senescence with the use of the determinate nodule of so...
International audienceRhizobia and legumes establish symbiotic interactions leading to the productio...