Area of research
Plant Science · Ecology
Research interest
Research interests include Biology, Rhizosphere, Ecology, Rhizobacteria, Botany, and Pseudomonas.
Root-associated Helotiales fungi: Overlooked players in plant nutrition
Natural plant disease suppressiveness in soils extends to insect pest control
Microbial diversity in soils suppressive to Fusarium diseases
Effect of Inoculation Level on the Impact of the PGPR Azospirillum lipoferum CRT1 on Selected Microbial Functional Groups in the Rhizosphere of Field Maize
Significance of the Diversification of Wheat Species for the Assembly and Functioning of the Root-Associated Microbiome
Comparison of <i>Actinobacteria</i> communities from human‐impacted and pristine karst caves
Microbial ecology of tourist Paleolithic caves
Ancient wheat varieties have a higher ability to interact with plant growth‐promoting rhizobacteria
Anthropization level of Lascaux Cave microbiome shown by regional‐scale comparisons of pristine and anthropized caves
Genomic, phylogenetic and catabolic re-assessment of the Pseudomonas putida clade supports the delineation of Pseudomonas alloputida sp. nov., Pseudomonas inefficax sp. nov., Pseudomonas persica sp. nov., and Pseudomonas shirazica sp. nov
Bacterial, archaeal and micro-eukaryotic communities characterize a disease-suppressive or conducive soil and a cultivar resistant or susceptible to common scab
1-Aminocyclopropane-1-carboxylate deaminase producers associated to maize and other Poaceae species
Rock substrate rather than black stain alterations drives microbial community structure in the passage of Lascaux Cave
Let the Core Microbiota Be Functional
Phylogenetic diversity and antagonistic traits of root and rhizosphere pseudomonads of bean from Iran for controlling Rhizoctonia solani
Breeding for increased nitrogen‐use efficiency: a review for wheat (<i><scp>T</scp>. aestivum </i><scp>L</scp>.)
Is plant evolutionary history impacting recruitment of diazotrophs and nifH expression in the rhizosphere?
Fluorescent Pseudomonas Strains with only Few Plant-Beneficial Properties Are Favored in the Maize Rhizosphere
Analysis of genes contributing to plant-beneficial functions in plant growth-promoting rhizobacteria and related Proteobacteria
Root microbiome relates to plant host evolution in maize and other <scp>P</scp> oaceae
Microorganisms and Biotic Interactions
Rhizosphere ecology and phytoprotection in soils naturally suppressive to <scp>T</scp> hielaviopsis black root rot of tobacco
Rhizosphere microbial communities associated with Rhizoctonia damage at the field and disease patch scale
Frequent, independent transfers of a catabolic gene from bacteria to contrasted filamentous eukaryotes
Plant growth-promoting rhizobacteria and root system functioning
Comparison of prominent Azospirillum strains in Azospirillum–Pseudomonas–Glomus consortia for promotion of maize growth
Monitoring of the relation between 2,4-diacetylphloroglucinol-producing Pseudomonas and Thielaviopsis basicola populations by real-time PCR in tobacco black root-rot suppressive and conducive soils
Pseudomonas and other Microbes in Disease-Suppressive Soils
Evolutionary history of synthesis pathway genes for phloroglucinol and cyanide antimicrobials in plant-associated fluorescent pseudomonads