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particles), which can result in ineffective crystallization throughout the targeted zone. This project aims to improve the homogeneity of bacteria-induced calcium carbonate precipitation within micro- and
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found in marine bacteria that are highly active against Gram-negative bacteria. These cyclolipopeptides feature a heptapeptide cycle and a hydrocarbon tail and include several non-canonical amino acids
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an international, stimulating, and collaborative research environment where your scientific career development is promoted. The project aims to track strain wide differences within human gut bacteria species in
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on the breeding and experimental use of germ-free animal models (mouse, pig) to study the effects of gut bacteria and defined microbiota components on the development of physiology and immune responses in models
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wide differences within human gut bacteria species in early childhood. Our goal is to improve the understanding of adaptive mechanisms employed by different gut bacteria at a high resolution to guide
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of single-entity electrochemistry of electroactive bacteria and redox liposomes with atomic force microscopy (AFM) measurements. Preparation of redox liposomes, culture of electroactive bacteria, single
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primarily focussed on characterising commensal spore-forming gut bacteria and the role of spores in microbiome transmission. The successful candidate will be based within the Browne Lab in the School
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bacteria. This is a collaborative project with the Mager Lab (immunology). You can find more information about our group at https://www.linkmetabolism.com . Your tasks: Construction and screening of CRISPR
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interact with the host, with diet and thus modulate health. Demonstrable experience of bacteriological culture and manipulation of fastidious anaerobic bacteria is required. Experience of bacterial growth
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immunology. We are working in the interdisciplinary field of microbiome-immunity interactions. More specifically, we aim to understand how specific bacteria impact on chronic diseases. For this project we