Area of research
Plant Science · Molecular Biology
Research interest
Research interests include Biology, Frankia, Symbiosis, Nitrogen fixation, Botany, and Actinorhizal plant.
Comparative phylogenomics and phylotranscriptomics provide insights into the genetic complexity of nitrogen-fixing root-nodule symbiosis
Ionizing-radiation-resistant Kocuria rhizophila PT10 isolated from the Tunisian Sahara xerophyte Panicum turgidum: Polyphasic characterization and proteogenomic arsenal
Phylogenomics reveals multiple losses of nitrogen-fixing root nodule symbiosis
Generation of a cluster-free Streptomyces albus chassis strains for improved heterologous expression of secondary metabolite clusters
Actinorhizal Signaling Molecules: Frankia Root Hair Deforming Factor Shares Properties With NIN Inducing Factor
Frankia canadensis sp. nov., isolated from root nodules of Alnus incana subspecies rugosa
Candidatus Frankia Datiscae Dg1, the Actinobacterial Microsymbiont of Datisca glomerata, Expresses the Canonical nod Genes nodABC in Symbiosis with Its Host Plant
Stone-dwelling actinobacteria <i>Blastococcus saxobsidens</i>, <i>Modestobacter marinus</i> and <i>Geodermatophilus obscurus</i> proteogenomes
Bacterial‐induced calcium oscillations are common to nitrogen‐fixing associations of nodulating legumes and non‐legumes
<i>Alnus</i> peptides modify membrane porosity and induce the release of nitrogen-rich metabolites from nitrogen-fixing <i>Frankia</i>
Genome Sequence of the Atypical Symbiotic <i>Frankia</i> R43 Strain, a Nitrogen-Fixing and Hydrogen-Producing Actinobacterium
Genome Features of the Endophytic Actinobacterium Micromonospora lupini Strain Lupac 08: On the Process of Adaptation to an Endophytic Life Style?
Micromonospora is a normal occupant of actinorhizal nodules
The Nocardia cyriacigeorgica GUH-2 genome shows ongoing adaptation of an environmental Actinobacteria to a pathogen’s lifestyle
Contrasted resistance of stone-dwelling Geodermatophilaceae species to stresses known to give rise to reactive oxygen species