Laboratory of Plant-Microbe Interactions - LIPM
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Reprogramming of DNA methylation is critical for nodule development in Medicago truncatula
The Decoy Substrate of a Pathogen Effector and a Pseudokinase Specify Pathogen-Induced Modified- Self Recognition and Immunity in Plants
Coselected genes determine adaptive variation in herbivore resistance throughout the native range of A.thaliana
The long-term maintenance of a resistance polymorphism through diffuse interactions
An immune receptor pair with an integrated decoy converts pathogen disabling of defensive transcription factors into resistance
Multihost experimental evolution of the pathogen Ralstonia solanacearum unveils genes involved in adpdation to plants
Transient hypermutagenesis accelerates the evolution of legume endosymbionts following horizontal gene transfer
CLIMARES Project – Climate and disease resistance: What impact on natural plant populations?
An integrated analysis of plant and bacterial gene expression in symbiotic root nodules using laser-capture microdissection coupled to RNA sequencing
A biomarker based on gene expression indicates plant water status in controlled and natural environments
Lipo-chitooligosaccharidic symbiotic signals are recognized by the LysM receptor like kinase LYR3 in the legume Medicago truncatula
Aphanomyces euteichesCell Wall Fractions Containing Novel Glucan-Chitosaccharides Induce Defense Genes and Nuclear Calcium Oscillations in the Plant HostMedicago truncatula
Experimental evolution of nodule intracellular infection in legume symbionts
An atypical kinase under balancing selection confers broad-spectrum disease resistance in Arabidopsis