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organized and detail-oriented with proficient communication skills, written and oral and ability to work effectively as a team. Experience with microbial genetics, protein purification, in vitro assays
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within the past five years. Preferred skills: Coursework or experience in genetics, molecular diagnostics (e.g., PCR, sequencing preparation), insect identification, or microbial screening. Fieldwork
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of Southampton. The project will involve the development of an innovative new multiparametric sensor technology to monitor the microbial properties of cattle rumen. The ultimate aim is to design, test and deploy
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screening and engineering for microbial bioprocess development; microbial physiology and adaptation for industrial applications; high-throughput screening and automation for strain optimization
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to work collaboratively to integrate microbial phenotypic data (e.g., fluxomics, transcriptomics, proteomics, metabolomics) into quantitative computational models capable of predicting and explaining
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, working alongside postdocs, research staff, and students, as well as with collaborators and established software development teams. Our interdisciplinary lab represents a convergence of microbial ecology
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, natural capital management and future food systems. It includes the Centre for Soil, Agrifood and Biosciences which has expertise in soil, plant and microbial systems across scales, with the Cranfield
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development. Our lab integrates multi-omics microbiome analyses, microbial genetics, experimental models, and clinical cohorts to investigate mechanisms by which early-life gut microbial metabolism shapes host
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Computer Science at the University of Southampton. The project will involve the development of an innovative new multiparametric sensor technology to monitor the microbial properties of cattle rumen
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on understanding the roles of ageing, inflammation and microbial influences on pancreatic health. The candidate will play an important role in advancing research activities through the coordination of experimental