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. The project focuses on developing and applying single-cell multi-omics approaches to uncover regulators acting upstream of known epigenetic writers and erasers during embryonic development. Expected start date
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these responses can be harnessed therapeutically. Current research integrates advanced immunophenotyping, systems immunology, single-cell multi-omics, viral genomics, and functional immune assays to dissect
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internal and external partners to advance the project. Your profile The ideal candidate holds a PhD in biochemistry, structural biology or a related field, and has hands-on experience with cell culture
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genetic basis of plant–microbe interactions, with a particular emphasis on data integration across plant species and data types (genomics, transcriptomics). Design, adapt and use deep learning methods
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their association with mobile genetic elements with the aim of devising a preliminary framework for risk factor analysis related to persistence of AMR, horizontal gene transfer, and dissemination between bacterial