Obiettivo A limited number of molecules have been characterized as plant growth regulators or hormones, usually identified due to the strong effect that they exert on plant architecture or development. Most of the metabolic pathways leading to their biosynthesis and catabolism are now well characterized, and all but one involve oxygenases belonging to the family of cytochrome P450 (P450) oxygenases. The increasing set of sequenced plant genomes reveals the evolutionary history and complex phylogeny of the P450 superfamily. It shows that some P450 genes are specific to taxa or evolutionary branches, which correlates with the versatility of plant metabolomes when different species are compared. But comparative analysis of plant genomes also point to ancient genes, highly conserved and under strong purifying selection. Those are most often involved in the metabolism of molecules essential for plant development and with signaling function. Taking advantage of the increasing power of comparative genomics, we propose to identify P450s that share similar evolutionary characteristics with their counterparts in known hormone metabolism. We propose to perform a comprehensive functional analysis of a set of candidates, using the easiest plant model Arabidopsis thaliana, and to assess their role in the biosynthesis or degradation of signaling compounds. This includes establishing a detail map of candidates’ expressions to evaluate their place and time of action, and a phenotypic analysis of inactivation mutants and overexpressors to assess the consequences of gene misexpression on plant development. Based on gene expression and potential mutant phenotypes, we will select tissues to be analyzed for metabolic changes associated with gene mutation using high-definition analytical tools. Enzyme activity will be assessed with recombinant proteins. We are confident that this innovative multidisciplinary approach will be a powerful tool to identify new and overlooked plant signaling pathways. Campo scientifico natural sciencesbiological sciencesbiological morphologycomparative morphologynatural sciencesbiological sciencesgeneticsmutationnatural sciencesmathematicspure mathematicsmathematical analysisfunctional analysisnatural sciencesbiological sciencesgeneticsgenomesnatural sciencesbiological sciencesbiochemistrybiomoleculesproteinsenzymes Programma(i) H2020-EU.1.3. - EXCELLENT SCIENCE - Marie Skłodowska-Curie Actions Main Programme H2020-EU.1.3.2. - Nurturing excellence by means of cross-border and cross-sector mobility Argomento(i) MSCA-IF-2015-EF - Marie Skłodowska-Curie Individual Fellowships (IF-EF) Invito a presentare proposte H2020-MSCA-IF-2015 Vedi altri progetti per questo bando Meccanismo di finanziamento MSCA-IF-EF-RI - RI – Reintegration panel Coordinatore CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS Contribution nette de l'UE € 185 076,00 Indirizzo RUE MICHEL ANGE 3 75794 Paris Francia Mostra sulla mappa Regione Ile-de-France Ile-de-France Paris Tipo di attività Research Organisations Collegamenti Contatta l’organizzazione Opens in new window Sito web Opens in new window Partecipazione a programmi di R&I dell'UE Opens in new window Rete di collaborazione HORIZON Opens in new window Costo totale € 185 076,00