Acronym :
COMICON Funding:
APRI Short Overview:
The objective was to improve MAPIEM and UTLN competencies in OMICS, particularly in Genomics and Transcriptomics. Involved MAPIEM permanent members: BARAQUET
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Chemistry of Functional Polymers
Articles
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Genomic and transcriptomic characterization of marine biofilm formation
20 October 2020 -
FRANCISCO Manon
14 April 2021From 12/04/2021 to 18/06/2021 Research Topics
Analysis of natural marine biofilms with a confocal microscope -
ABBURA Nathan
19 February 2021From 01 to 06/2021 (thursdays) Research Topics
Biofilms, amibes -
FERRE Lisa
14 April 2021From 12/04/2021 to 04/06/2021 Research Topics
Study of the biochemical composition of marine biofilms -
ESPENON Julie
19 February 2021From 01 to 06/2021 (thurdays) Research Topics
Bioflms, amibes -
Couplage multi-Omiques à l’échelle de l’Holobionte : Effet de la diversité Spécifique des Phaeophyceae Taonia sur l’intéractION hôte-microbiome à la Surface
13 June 2019, by Hugues BRISSETAcronym: COHESIONS
Funding: [EC2CO (CNRS-INSU)]
Short Overview: L’algue brune Taonia atomaria (Dictyotaceae) représente un modèle particulièrement pertinent pour l’étude du contrôle des mécanismes d’épibiose chez les macroalgues. Cette espèce cosmopolite peu épiphytée par des macroorganismes est commune le long des côtes méditerranéennes et atlantiques. Afin de mieux comprendre les interactions au sein de ce modèle, de nouvelles méthodologies ont été développées au laboratoire couplant (…) -
Etude des Interactions Amibes-Bactéries Marines et détection de molécules signal
20 October 2020Acronym :
ABAMAR Funding:
EMBRC-France Short Overview:
This project allowed the acces to the services and platform bellonging to the Oceanological observatory of Banyuls-sur-mer, en partenariat avec R. Lami, LBBM-USR Involved MAPIEM permanent members: MOLMERET MaëllePartners:LBBM-USR 3579
LAMI Raphaël -
Synthesis and characterization of diblock and statistical copolymers based on hydrolyzable siloxy silylester methacrylate monomers
2 June 2016 -
Biofilms in the marine environment: role of c-di-GMP
21 October 2020Acronym :
BEEMROC Funding:
CD-TPM, APRI Short Overview:
The objective was to characterize the c-di-GMP signaling pathway in Shewanella oneidensis. This pathway controls the planktonic to biofilm transition. The long term goal is to find molecules interfering with this pathway to prevent biofilm formation. Involved MAPIEM permanent members: BARAQUET Claudine -
Ferrocenylmethyl methacrylate: from antifouling coatings to molecularly imprinted polymer sensors
31 August 2018, by CaB