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close to completion of a relevant PhD. You will manage your own academic research, effectively coordinating multiple strands of work. Direct experience in molecular genetics and/or plant-microbe interactions
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paradigms, neural circuit mapping, advanced genetics and two-photon calcium imaging to uncover how the brain selects between conflicting drives, and how these choices vary by context, internal state, and sex
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attached to the project. The successful applicant must hold a PhD/DPhil in a relevant subject. They must have peer-reviewed publications using data science approaches, for example, genetic analysis
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communities, such as the human gut microbiome. This role will use a combination of microbiological, genetic and analytical techniques to isolate and engineer bacteria for use as next-generation probiotics
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: molecular biology, C. elegans maintenance, genetics, and transgenics, live fluorescence microscopy and biochemistry. See https://www.davieslab.org for more information about the Davies lab's research
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: molecular biology, C. elegans maintenance, genetics, and transgenics, live fluorescence microscopy and biochemistry. See https://www.davieslab.org for more information about the Davies lab’s research
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on the molecular mechanistic details of mutagenesis in the human genome, based in the research team of Professor Martin Taylor at the Institute of Genetics and Cancer. This will be primarily through computational
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and teaching. Based within NDPH, The China Kadoorie Biobank (CKB) Study is a uniquely rich and powerful global resource for investigating the environmental and genetic determinants of common chronic
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completion) in psychology, life sciences, genetics, epidemiology, or a related field, with strong quantitative skills. This is an exciting opportunity to join a collaborative, multidisciplinary team working
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, genetic, and DNA methylation analyses to patient-derived samples and disease models. Working closely with a dynamic and multidisciplinary team of clinicians and scientists, they will help generate and