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the tomato response to Zn and Fe deficiency and design strategies to improve the Zn/Fe nutritional status of tomatoes for human health. You will generate dedicated (single-cell) transcriptional data sets
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challenge as we lack a blueprint that allows for a bottom-up engineering approach. At the same time, there is an experimental bottleneck: the number of ingredients (lipids, amino acids, cell-free gene
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understand the inner workings of cells at the molecular level. The group houses an excellent infrastructure that includes more than a dozen state-of-the-art mass spectrometers, combined with cell culture
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expertise in DNA damage and transcription stress (van Sluis et al., 2026, Nature Reviews Molecular Cell Biology) with advanced human neuronal differentiation models and functional neurobiology. Within
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understand the inner workings of cells at the molecular level. The group houses an excellent infrastructure that includes more than a dozen state-of-the-art mass spectrometers, combined with cell culture
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status of tomatoes for human health. You will generate dedicated (single-cell) transcriptional data sets feeding into the MNase-defined cistrome occupancy (MOA-seq) analysis of transcription factor binding
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cellular targeting and lamella preparation of frozen-hydrated biological specimen on a unique instrument, with the aim of enabling efficient and reproducible structural analysis of molecular complexes in
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layer for gene expression control and numerous other processes in the cell. In this context, individual and combinatorial modifications guide spatiotemporal recruitment of regulatory factors to specific
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AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic
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What you will be contributing A PhD obtained within the past four years in neuroscience or a related research field. Demonstrated experience with single-cell electrophysiology and/or live functional