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(proteomics, metabolomics, lipidomics) and phenotypic end-points. As our model system, we study springtails (Collembola), key terrestrial ectothermic invertebrates of the soil community. This PhD project is
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biophysical assays (e.g., micropipette aspiration, atomic force microscopy), and help establish robust protocols for force mapping in early embryos. Perform spatially resolved proteomic imaging to link gene
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for force mapping in early embryos. Perform spatially resolved proteomic imaging to link gene expression with mechanical and dynamical behaviors Extract quantitative metrics (e.g., nematic order parameters
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to core facilities including flow cytometry, FACS, confocal microscopy, high-throughput sequencing and proteomics. The selected candidate will be able to interact with a cross-disciplinary team of cell
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, genomics, transcriptomics, proteomics, phylogenomics and enzyme characterization. We especially encourage candidates with a strong interest in deep-sea research to apply for the position. We are looking
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strategies. The work will include cultivation, microscopy, geochemistry, genomics, transcriptomics, proteomics, phylogenomics and enzyme characterization. We especially encourage candidates with a strong
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molecular responses to whole-organism effects, we will combine targeted physiological measurements with multi-omics (proteomics, metabolomics, lipidomics) and phenotypic end-points. As our model system, we
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infrastructure includes a well-equipped laboratory and access to core facilities including flow cytometry, FACS, confocal microscopy, high-throughput sequencing and proteomics. The selected candidate will be able