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infectious diseases are monitored in the future. Aims and Methods This interdisciplinary project sits at the intersection of public health, microbiology and social science addressing the question: Can home
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for stable maintenance of fully synthetic chromosomes within eukaryotic cells. We offer a highly collaborative multi-disciplinary PhD between the Nieduszynski (chromosome biology; technology development) and
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Primary supervisor - Dr David Lea-Smith Engineering biology has enormous potential to address global environmental challenges like bioremediation, biosequestration, pollutant monitoring, and
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converting a widespread pollutant, nitrate, to a valuable fertiliser and chemical feedstock, ammonia. Harnessing sunlight as an abundant and sustainable source of energy to drive the upcycling of waste
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Number of Opportunities Available: 1 Primary Supervisor: Dr. Ben Miller Plants need to respond to the environment in order to adapt and grow. Plants often modify the concentration of calcium ions in
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response to stress (for example during periods of drought). This PhD project will involve using biophysical and molecular biology techniques to determine the type of structures which the RNA is able to fold
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these pathways in cells. The project will provide training in a wide-range of state-of-the-art biophysical, molecular biology and microbiological techniques, from characterizing different types of DNA/RNA
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their host plant. Use cutting-edge molecular biology and genomics, we will try to solve a decades-old mystery in plant pathology. Many plant disease-causing fungi lose their ability to cause disease
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, sexual orientation, age or social background. To maximise accessibility and attract students from underrepresented groups to our programme we use bespoke templates for applicant Personal and Research