Acronym :
ExUS Funding:
FUI 25 Short Overview:
The ExUS project aims to develop an ecological alternative system for the prevention of mineral and bacterial deposits on the ships hulls and in heat exchangers, based on the use of ultrasonic guided waves associated with the heterodyne effect of multiple frequencies. Involved MAPIEM permanent members: MARGAILLAN AndréPartners: Sofchem MCI NOVALL Barriquand LRGP
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BARAQUET Claudine
Articles
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Control of biological and mineral fouling on ships
1 September 2020 -
Spatial organization of multi-species marine bacteria in biofilm
17 September 2018 -
Quorum sensing interference in Pseudomonas and related strains isolated from marine ecosystems
21 October 2020Acronym :
SENPSEUDOMAR Funding:
PHC TASSILI Short Overview:
This project aims at better understand how Pseudomonas strains found in marine environment survive in particular in complex biofilms and to evaluate approaches that could limit their development. Involved MAPIEM permanent members: MOLMERET Maëlle BARAQUET Claudine BLACHE YvesPartners:Nom de l’organisation partenaire
Géomatique, Ecologie Et Environnement (GEE), Université Mustapha STAMBOULI Mascara Algeria
MELIANI Amina (…) -
Biofilm formation and signaling of c-di-GMP in Shewanella oneidensis
17 September 2018 -
Genomic and transcriptomic characterization of marine biofilm formation
20 October 2020Acronym :
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 -
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 -
Mechanistic insights into c-di-GMP-dependent control of the biofilm regulator FleQ from Pseudomonas aeruginosa
6 June 2016