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employ a broad range of experimental approaches, spanning plant molecular biology and high-throughput sequencing technologies. The successful applicant will be expected to lead independent research aligned
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employ a broad range of experimental approaches, spanning plant molecular biology and high-throughput sequencing technologies. The successful applicant will be expected to lead independent research aligned
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states of matter, which are generally characterised by their long-range quantum entanglement, fractionalised excitations, and absence of ordinary magnetic order, using multiple experimental techniques
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hundreds of samples from multiple independent marine transmissible cancer clones. The role provides an exciting opportunity to combine single-cell cancer genomics with molecular cytogenetics and statistical
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use computational approaches to mine natural biodiversity in gene sequences to identify engineering targets to increase lipid content and enhance the water use efficiency. The project will make use
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of quantitative genetics, performing GWAS, QTL detection, genomic prediction and previous work experience with whole genome sequence data and imputation. A prior knowledge of functional variant prioritisation
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-scale data analysis, and systems modelling. The post holder will play an integral role in experimental design, sequencing, data interpretation, manuscript preparation, project coordination, and the
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administrative activities which involves small scale project management, to co-ordinate multiple aspects of work to meet deadlines. You will design and perform original research using in vivo disease modelling
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sequencing technologies. The successful applicant will be expected to lead independent research aligned with the objectives of the BBSRC-funded project and work closely with the PI, Dr Jungnam Cho, and his
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multiple aspects of your work to meet deadlines. In this position you will contribute ideas for new research projects including development of new grant proposals that support the ongoing research within