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the physical and chemical processes that define the functional state of a cell. Our goal: To make 4D (space plus time) computational whole cell models of bacterial, yeast, and mammalian cells. We are working
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microbial genomics to join the dynamic research group led by Professor Vittorio Venturi. At AGC, Professor Venturi’s research program extends to unraveling the intricacies of bacterial cell-cell signaling
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apply advanced analytical chemistry techniques to investigate the bacterial cell wall. About the Vollmer Group - https://imb.uq.edu.au/research-groups/vollmer . Key responsibilities will include
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the network StraDiVarious (Strains, Diagnostics and Variants ) is a European-wide intersectoral doctoral training network focussed on focus on emerging bacterial threats – specifically the ESKAPE
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of microbial biominerals and the influence of their morphology on the binding and bacterial degradation of glycans in the ocean. The focus is on the silica cell walls of diatoms and the calcium carbonate plates
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network StraDiVarious (Strains, Diagnostics and Variants ) is a European-wide intersectoral doctoral training network focussed on focus on emerging bacterial threats – specifically the ESKAPE pathogens
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://www.mn.uio.no/ibv/english/people/aca/dirkl/index.html Håvard Haugen: https://www.odont.uio.no/iko/english/people/aca/haavarjh/index.html Project description The PhD candidate will develop bacterial biofilm models
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doctoral training network focussed on focus on emerging bacterial threats – specifically the ESKAPE pathogens (Enterococcus faecium, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii
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focuses mainly on rice blast research with the potential to branch out to other rice diseases caused by filamentous fungi. The scope may also include bacterial and viral diseases affecting crops such as
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David Rudner’s lab at Harvard Medical School in Boston Massachusetts. Work in the Rudner lab focuses on fundamental questions in bacterial cell biology and development: How is information transduced