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bacterial viruses (phages) and quantifying their interactions with their hosts, with a focus on oral pathogens. This will be accomplished using molecular, genetic, and microbiology approaches. Duties
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deployment of innate immune strategies that enable survival during phage attack. In addition, another major focus of our research is protein engineering and the development of new molecular tools based
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BBSRC Yorkshire Bioscience DLA Programme: Predicting pathogen evolution: using experimental evolution to understand the impact of phage therapy on Clostridioides difficile School of Biosciences PhD
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mainly in wet-lab, discovering binders by phage display selection and characterize them by ELISA, BLI and enzymatic activity assays. You will also perform in silico structural analysis and design of
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experimental procedures in support of ongoing research activities. Responsibilities include, but are not limited to, bacterial cell culture, phage isolation, nucleic acid extractions, and molecular analyses
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, new microbial solutions (phages, protists, microbial consortia) and ds-RNA pesticides are emerging, low-risk solutions expect to reach the market in coming years. Despite ongoing regulatory efforts by
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pesticides. In addition, new microbial solutions (phages, protists, microbial consortia) and ds-RNA pesticides are emerging, low-risk solutions expect to reach the market in coming years. Despite ongoing
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Infectious Disease Institute has a longstanding commitment to HIV Cure research and has recently added a focus areas on SARS-CoV-2 (including Long COVID), mRNA vaccines, and phage therapy. Primary criteria
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the Pereira laboratory: https://www.lsi.umich.edu/science/our-labs/filipa-pereira-lab Responsibilities* Experimental responsibilities will include: Perform genome engineering of Streptomyces strains
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immune strategies that enable survival during phage attack. In addition, another major focus of our research is protein engineering and the development of new molecular tools based on these proteolytic