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on achieving food security against the background of a changing climate and the need to reduce reliance on fossil fuels. Understanding how the plant immune system works, and how it could be engineered
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to undertake a 4-year PhD research project whilst enhancing professional development and research skills through a comprehensive training programme. You will join a vibrant community of world-leading researchers
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papers. Attendance at summer schools, such as the National Centre for Atmospheric Science summer school , will provide additional networking opportunities. This PhD project is in a competition for a
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Primary supervisor – Prof Parvadha Suntharalingham BACKGROUND The ocean plays a key role in controlling atmospheric greenhouse-gas levels. It removes a significant fraction of anthropogenic carbon-dioxide from the atmosphere, and also emits nitrous-oxide and methane, important greenhouse-gases...
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have recently identified a set of five anaerobic bacteria, known as the Anaerobic Bacteria Biomarker Set (ABBS), that, when present, are associated with the development of aggressive prostate cancer [1
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Primary Supervisor -Prof Michal Mackiewicz Scientific background Marine litter is a key threat to the oceans health and the livelihoods. Hence, new scalable automated methods to collect and analyse data are needed to enhance our understanding of sources, pathways and impact of litter. Cefas is...
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Primary Supervisor - Dr Stefan Bidula Scientific background Dimethylsulfoniopropionate (DMSP) is a stress molecule produced by marine organisms such as phytoplankton, algae, corals, and some plants. It is broken down to the gas dimethyl sulphide (DMS) by marine bacteria, providing the...
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lead to the allocation of energy and nutrients towards AMR instead of biomass growth. This PhD project will unravel the mechanisms driving AMR in pioneer and extreme soil environments in the Arctic
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. The aim of this project is to determine how ppRHOs underpin this ecosystem service. Thus, the PhD candidate will physiologically characterise ppRHO knock-in diatom cell lines and investigate how those
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atmosphere (1). Research Methodology: The primary objective of this PhD studentship is to develop near real-time capability for top-down ffCO2 quantification, based on synchronous changes in atmospheric CO2