Les bactéries promotrices de la croissance des plantes (PGPR) peuvent améliorer la performance et la tolérance des plantes lors de stress environnementaux. Arabidopsis thaliana est un modèle de choix pour étudier les mécanismes impliqués dans les interactions plante-bactéries. Nous avons analysé de multiples traits associés à la dynamique de croissance, au développement et la physiologie des végétaux afin d'évaluer les effets de l'inoculation par Phyllobacterium brassicacearum STM196, une PGPR isolée de la rhizosphère du colza, sur les réponses d'A. thaliana à des stress hydriques de différentes intensités. Grâce à des outils performants de phénotypage, nous avons développé une nouvelle approche d'analyse à haut-débit pour examiner l'implic...
We have billions of micro-organisms in our gut, including bacteria that are fundamental to our healt...
A valuable strategy to improve crop yield consists in the use of plant growth promoting rhizobacteri...
Biotic and abiotic stress factors have a major impact on plants and cause extensive losses to crop p...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
International audienceUnderstanding how biotic interactions can improve plant tolerance to drought i...
Les isoprénoïdes constituent une grande classe de molécules que l'on retrouve chez tous les organism...
La présence dans la rhizosphère des plantes de "Plant Growth Promoting Rhizobacteria" (PGPR) augment...
Extreme environmental conditions, such as abiotic stresses (drought, salinity, heat, chilling and in...
We have billions of micro-organisms in our gut, including bacteria that are fundamental to our healt...
A valuable strategy to improve crop yield consists in the use of plant growth promoting rhizobacteri...
Biotic and abiotic stress factors have a major impact on plants and cause extensive losses to crop p...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Plant growth promoting rhizobacteria (PGPR) can enhance plant performance and plant tolerance to env...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
Mutualistic bacteria can alter plant phenotypes and confer new abilities to plants. Some plant growt...
International audienceUnderstanding how biotic interactions can improve plant tolerance to drought i...
Les isoprénoïdes constituent une grande classe de molécules que l'on retrouve chez tous les organism...
La présence dans la rhizosphère des plantes de "Plant Growth Promoting Rhizobacteria" (PGPR) augment...
Extreme environmental conditions, such as abiotic stresses (drought, salinity, heat, chilling and in...
We have billions of micro-organisms in our gut, including bacteria that are fundamental to our healt...
A valuable strategy to improve crop yield consists in the use of plant growth promoting rhizobacteri...
Biotic and abiotic stress factors have a major impact on plants and cause extensive losses to crop p...