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including ancient DNA, stable isotope analysis, zooarchaeology, morphometrics to explore how different cultural practices shaped species and ecological outcomes and how those environmental changes shaped
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directly into their DNA. The lab combines experimental and computational approaches to develop and apply barcode-based lineage recording systems, single-cell technologies, and perturbation tools to uncover
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be available. Position Description A PhD degree in one the fields: plant biology/ genetics, human nutrition, physiology, nutritional epidemiology, biotechnology, genetics, or food systems, or other
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2025. Highly motivated and committed candidates with an interest in DNA damage response pathways and chromosome biology are encouraged to apply. The post is fully funded, although the post-holder will be
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of inflammasome-driven inflammation in cancer, with a particular focus on the AIM2 inflammasome receptor, which acts as a sentinel for pathogenic double-stranded DNA (dsDNA). When AIM2 detects dsDNA, it triggers
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samples, containing some 50 million insects representing more than 1 million species, most of which are currently undescribed. The entire material has gone through DNA metabarcoding using mild lysis
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understanding of the gut microbiota at the molecular level. Research projects leverage cutting-edge techniques, including DNA barcoding, short and long-read sequencing technologies, and high-throughput functional
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B lymphocytes. Specifically, we investigate how transcription, chromatin architecture, DNA replication and epigenetic features regulate the key processes of antibody somatic hypermutation and class
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analysis, biochemical experiments, CRISPR and recombinant DNA techniques, phenotypic analysis, epifluorescence microscopy, confocal and electron microscopy, high throughput genomics, high throughput
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imaging (RNA/DNA FISH) Functional genomics and CRISPR-based perturbations Ideal Candidate A recent or upcoming PhD graduate in immunology, molecular biology, biochemistry, or related fields Strong expertise