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poorly understood. This project seeks to address this question by examining the role of adaptive radiation and associated key innovations in the evolution of freshwater diatoms. By integrating morphology
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the National Centre of Competence in Research (NCCR) AntiResist. We develop and use state-of-the-art organoid technology to better understand human infections and foster antibiotic discovery. We conduct a wide
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well as to develop radically new therapies for eye diseases. These therapies are urgently needed, since the prevalence of visual diseases is rising globally, and effective therapies are lacking for most of them. As
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a Swiss-wide research consortium funded by the Swiss National Science Foundation (SNSF). AntiResist is transforming antibiotic discovery and development through in vitro modelling of in-patient
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to solve fundamental questions surrounding evolution and interaction between bacteria and bacteriophages. The Biozentrum provides a highly stimulating collaborative research environment with a
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the interaction and co-evolution between bacteria and a family of large bacterial viruses, called jumbophages. We are particularly interested in how bacteria use immune systems to antagonize jumbophage infection
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disease and to develop pioneering therapies benefiting the lives of patients in areas of unmet need. With more than 70 research groups and 800 employees, the Department of Biomedicine is the largest
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disease and to develop pioneering therapies benefiting the lives of patients in areas of unmet need. With more than 70 research groups and 800 employees, the Department of Biomedicine is the largest
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Your position Stacking and twisting atomically thin materials offers unprecedented control over their nanoscale magnetic, electronic, and optical properties. In this project, we will develop a novel
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bacteria, the functioning of genome-wide gene regulatory networks, and the evolution of gene regulation. Besides using a variety of quantitative techniques including flow-cytometry and in-lab evolution, our