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and bacterial genetic approaches required for the project. - To perform the approaches related to protein biochemistry required in the frame of the project. - To perform the optical and electronic
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that organelle protein import machinery originated through co-opting an ancient bacterial resistance mechanism against antimicrobial peptides (AMPs) (Wollman 2016; Caspari and Lafontaine 2021). To that end we
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of bacterial diversity in clouds and aerosols : https://doi.org/10.1016/j.atmosenv.2023.119635 - Clouds influence the functioning of airborne microorganisms : https://doi.org/10.5194/bg-22-1257-2025
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functionality: it must be biocompatible to promote the adhesion and proliferation of host cells, while preventing bacterial adhesion and colonization. - Elaborate coatings based on metal oxide nanoparticles (ZnO
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bacteria coevolve with their viruses (phages). Recent studies discovered an impressive number of new “anti-phage” defence systems in bacterial genomes. These defence genes are thought to be very mobile, as
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-free synthesis, but also bacterial expression. S/he will analyze them by solid-state NMR, potentially complemented by other biophysical approaches and solution NMR. The candidate will work closely with
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well as a postdoctoral researcher. In addition, Master's students (M1 and M2) are regularly recruited for various projects within the team. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8261
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the hypothesis that the plant (WP1), bacterial community (WP2), soil organomineral association (WP3) continuum can, while meeting agronomic requirements (WP4), be optimized to increase soil carbon sequestration