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automated feeders), and analyse microbiome composition using 16S rRNA and whole-genome sequencing. Statistical modelling will test for links between microbes and host development and fitness.� PROJECT
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/interview Field work experience Desirable Application/interview Wet-lab experience of preparing samples for next-generation sequencing Desirable Application/interview Further Information Grade 7 Salary
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, reliable, and aligned with regulatory requirements. Clinical integration: Throughout the project, the student will work closely with clinicians and healthcare providers under the guidance of the secondary
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the resulting impact on ectoderm differentiation. Advanced Profiling: Profile the resulting changes in protein synthesis and abundance using state-of-the-art sequencing and proteomics techniques. Mechanism
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during phage treatment will therefore be critical to the success of future therapeutics. Research Aims In this project you will combine real-time evolutionary experiments with genome sequencing and
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importance of JAK-STAT pathway biology in control of innate immune cell fate and function. RNA sequencing of samples deficient for JAK-STAT pathway genes and controls will provide systems level mechanistic
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with fluorescent immune cells or immune response reporters, for unparalleled in-depth assessment of host responses in vivo. RNA sequencing of samples deficient for type I IFN pathway genes for systems
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marrow is particularly important because it is the “factory” that produces blood cells. Diseases like multiple myeloma (a cancer of plasma cells) or certain leukaemias develop within the marrow. Many
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in plant–microbe interaction assays, microbiome analysis, and metabolite profiling. You will gain experience in plant disease phenotyping, soil microbiome profiling (amplicon/metagenomic sequencing
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universities and receive training in: Plant–microbe interaction studies and automated phenotyping (Sheffield & Utrecht) Next-generation sequencing and microbiome data analysis (RNA-seq, metagenomics