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Financement de l’UE (4 380 450 €) : Méthodes de culture innovantes pour la biodécouverte marine Hor21/11/2023 Programme de recherche et d'innovation de l'UE « Horizon »
Texte
Méthodes de culture innovantes pour la biodécouverte marine
Despite their well-recognized potential, marine bioactive molecules are still difficult to source due to a lack of controlled culturing and processing infrastructures, and their chemical synthesis is hampered by their chemical complexity. The marine environment is largely affected by global change and wild harvesting of marine bioresources does not represent a sustainable supply of these biomolecules. The main sources of the high-value biomolecules are corals, sponges, algae, involving industrial end-users in the medical and pharmaceutical, food, and cosmetic sectors. Therefore, new approaches are urgently needed in marine biotechnology as microbial engineering has not fully met the expectations for producing the marine bioactives identified in invertebrates and seaweeds. Recent advances in thesynthetic biology of terrestrial natural products are offering unique opportunities to supply bioactives of terrestrial origin. Omics technologies have also transformed the way the complexity of the marine holobiont can be viewed and today the integration of omics data such as genomics and metabolomics can increase our understanding of the functioning and processes of living organisms including their metabolic pathways. COMBO will allow the transfer of knowledge from terrestrial to marine biotechnology through the engineering of marine metabolic pathways using Omics approaches. The rationale behind COMBO lies in the power of synthetic consortia of host cells and microbial cells based on the concept of holobiont and auxotrophy. To this end, we will exploit the recent advances in co-cultures systems. Indeed, the development of synthetic consortia has been shown to support specific ecological dynamics, promote microbial species growth, and syntheses of valuable chemicals. COMBO will therefore expand the potential offered by underused marine sponges and seaweeds known to produce bioactives such as terpenoids and alkaloids for the cosmetic and pharmaceutical markets.
| University OF Utah | ? |
| Bio Base Europe Pilot Plant VZW | 225 000 € |
| Centre National de la Recherche Scientifique CNRS | 125 000 € |
| Danmarks Tekniske Universitet | 533 658 € |
| Ethniko Kai Kapodistriako Panepistimio Athinon | 346 125 € |
| Fundacion Centro de Excelencia en Investigacion de Medicamentos Innovadores en Andalucia | 509 963 € |
| Hortimare B.V. | 275 224 € |
| Mungo Murphy's Seaweed CO. Ltd. | 186 875 € |
| Universidad de Santiago de Compostela | 304 125 € |
| Universite d'Angers | 113 981 € |
| Universite de Tours | 324 000 € |
| University OF Cape Town | 29 245 € |
| University of Galway | 765 294 € |
| Wageningen University | 641 961 € |
https://cordis.europa.eu/project/id/101135438
Cette annonce se réfère à une date antérieure et ne reflète pas nécessairement l’état actuel. L’état actuel est présenté à la page suivante : University of Utah Research Foundation, UT, États-Unis.