Abstract Background The Arabidopsis thaliana F-box protein MORE AXILLARY GROWTH2 (MAX2) has previously been characterized for its role in plant development. MAX2 appears essential for the perception of the newly characterized phytohormone strigolactone, a negative regulator of polar auxin transport in Arabidopsis. Results A reverse genetic screen for F-box protein mutants altered in their stress responses identified MAX2 as a component of plant defense. Here we show that MAX2 contributes to plant resistance against pathogenic bacteria. Interestingly, max2 mutant plants showed increased susceptibility to the bacterial necrotroph Pecto...
To adapt to the diverse array of biotic and abiotic cues, plants have evolved sophisticated mechanis...
Continuously exposed to the challenges from various kinds of pathogens, plants have evolved multilay...
Plant pathogens cause huge yield losses. Plant defense often depends on toxic secondary metabolites ...
Strigolactones are a group of phytohormones that control developmental processes including shoot bra...
Background: A small group of F-box proteins consisting of a conserved F-box domain linked to a domai...
Strigolactones (SLs) are the most recently discovered phytohormones, and their roles in root archite...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
ABSTRACT In plants, resistance to necrotrophic pathogens depends on the interplay between different ...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
The fatty acid oxygenation up-regulated 2 (fou2) mutant in Arabidopsis thaliana creates a gain-of-fu...
Plants are exposed to many stress factors, such as drought, high salinity or pathogens, which reduce...
The fatty acid oxygenation up-regulated 2 (fou2) mutant in Arabidopsis thaliana creates a gain-of-fu...
Altres ajuts: CERCA Programme/Generalitat de Catalunya; Research Promotion Plan from the Universitat...
In order to protect themselves against several biotic and abiotic stresses, plants are equipped with...
Abstract only availableThe destruction of plants by a pathogen results in millions of dollars lost i...
To adapt to the diverse array of biotic and abiotic cues, plants have evolved sophisticated mechanis...
Continuously exposed to the challenges from various kinds of pathogens, plants have evolved multilay...
Plant pathogens cause huge yield losses. Plant defense often depends on toxic secondary metabolites ...
Strigolactones are a group of phytohormones that control developmental processes including shoot bra...
Background: A small group of F-box proteins consisting of a conserved F-box domain linked to a domai...
Strigolactones (SLs) are the most recently discovered phytohormones, and their roles in root archite...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
ABSTRACT In plants, resistance to necrotrophic pathogens depends on the interplay between different ...
AbstractPlants recognize many pathogens through the action of a diverse family of proteins called di...
The fatty acid oxygenation up-regulated 2 (fou2) mutant in Arabidopsis thaliana creates a gain-of-fu...
Plants are exposed to many stress factors, such as drought, high salinity or pathogens, which reduce...
The fatty acid oxygenation up-regulated 2 (fou2) mutant in Arabidopsis thaliana creates a gain-of-fu...
Altres ajuts: CERCA Programme/Generalitat de Catalunya; Research Promotion Plan from the Universitat...
In order to protect themselves against several biotic and abiotic stresses, plants are equipped with...
Abstract only availableThe destruction of plants by a pathogen results in millions of dollars lost i...
To adapt to the diverse array of biotic and abiotic cues, plants have evolved sophisticated mechanis...
Continuously exposed to the challenges from various kinds of pathogens, plants have evolved multilay...
Plant pathogens cause huge yield losses. Plant defense often depends on toxic secondary metabolites ...