Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Microbiome, Rhizobacteria, Botany, Arabidopsis, and Rhizosphere.
Roots: metabolic architects of beneficial microbiome assembly
Cell-type-specific transcriptomics reveals that root hairs and endodermal barriers play important roles in beneficial plant-rhizobacterium interactions
Unearthing soil-plant-microbiota crosstalk: Looking back to move forward
Interplay between Amaryllidaceae alkaloids, the bacteriome and phytopathogens in <i>Lycoris radiata</i>
Editorial: Organic amendments: microbial communities and their role in plant fitness and disease suppression
Transcriptome Signatures in Pseudomonas simiae WCS417 Shed Light on Role of Root-Secreted Coumarins in Arabidopsis-Mutualist Communication
Evolutionary “hide and seek” between bacterial flagellin and the plant immune system
Modulation of the Root Microbiome by Plant Molecules: The Basis for Targeted Disease Suppression and Plant Growth Promotion
Coumarin Communication Along the Microbiome–Root–Shoot Axis
The Soil-Borne Identity and Microbiome-Assisted Agriculture: Looking Back to the Future
Pseudomonas simiae WCS417: star track of a model beneficial rhizobacterium
The Age of Coumarins in Plant–Microbe Interactions
Rhizosphere-Associated Pseudomonas Suppress Local Root Immune Responses by Gluconic Acid-Mediated Lowering of Environmental pH
Rhizosphere-enriched microbes as a pool to design synthetic communities for reproducible beneficial outputs
Molecular dialogue between arbuscular mycorrhizal fungi and the nonhost plant <i>Arabidopsis thaliana</i> switches from initial detection to antagonism
Type III Secretion System of Beneficial Rhizobacteria Pseudomonas simiae WCS417 and Pseudomonas defensor WCS374
MYB72-dependent coumarin exudation shapes root microbiome assembly to promote plant health
Microbial small molecules – weapons of plant subversion
Root transcriptional dynamics induced by beneficial rhizobacteria and microbial immune elicitors reveal signatures of adaptation to mutualists
Rhizosphere Microbiome Recruited from a Suppressive Compost Improves Plant Fitness and Increases Protection against Vascular Wilt Pathogens of Tomato
Unearthing the genomes of plant-beneficial Pseudomonas model strains WCS358, WCS374 and WCS417