- Presentation
- Research
- REGARN : Regulatory non-coding RNAs in root plasticity
- ChromD : Chromosome Dynamics
- SILAB : Signaling pathways regulating Legume root system Architecture through Beneficial bacteria
- Qlab : Plant Quantitative Genomics and Epigenomics
- FLOCAD : Flower and Carpel Development
- CCARS : Climate Change & Redox Signaling
- STRESS : Stress signaling
- MetaboActions : Signaling, regulation and metabolic interactions
- DPHYS : Department Physiology and signaling
- GDYNPATH: Genome Dynamics and Pathogen Resistance
- SYMUNITY: Symbiosis and Immunity
- OGE: Organellar gene expression
- GNet : Genomic Networks
- GUILLOTIN Lab
- Teaching
- Platforms
- Databases
Genome Editing
TILLING shows its limitations when targeting genes belonging to multigenic families. Methods for modifying multiple genes simultaneously, based on CRISPR / Cas9 genomic editing technology, offer new solutions to this problem. For this we have established MultiCrisp pipline. The objective of this pipline is to facilitate the functional analysis of redundant gene families in plants and to create agronomic traits of interest.

