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discovery. This position is funded by a National Institutes of Health (NIH) grant focused on unlocking the biosynthetic potential of Clostridial bacteria, a poorly understood but exceptionally rich source
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, with a particular focus on iron homeostasis in pathogenic bacteria. In this context, the research axis dedicated to targeting metallo-antibiotics using bacterial metabolites is currently expanding
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organisms such as virus, bacteria, fungi, insects, yeast cells and even human cells are also studied. Our main areas or research are: the interaction between plants and microorganisms, and other forms
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and CFF grants (https://reporter.nih.gov/search/kpoQKsh8Pkqp4S1_RS1-PQ/project-details/11259946 ), which looks for fundamental insights into novel oxidative reactions, the exported proteins that depend
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natural environments. It fits with Sustainable Transitions axe of the TIRIS program (https://anr.fr/ProjetIA-22-EXES-0015 ), addressing challenges related to energy transition, resource conservation and
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doctoral degree that is three years old at most. About us The research of the department focusses on plants, but other organisms such as virus, bacteria, fungi, insects, yeast cells and even human cells
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gene copy number. Isolate and characterize bacteria and prepare DNA from clinical samples. Assist laboratory members with experiments. Prepare laboratory reagents. Processing of sputum samples (20
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extracellular polymers, bacteria growing in biofilms survive antibiotic concentrations orders of magnitude above those that eradicate the same strain in suspension. The matrix limits penetration, internal
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computational simulations to understand how bacteria communicate, acquire nutrients, and cause disease—and to translate these mechanistic insights into new strategies for targeting bacterial virulence
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Number: 13610 School: Faculty of Arts and Sciences Position Description: Applicants are now being considered for a postdoctoral position in the Gozzi Lab at the Rowland Institute at Harvard (https