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elegans (C. elegans) as a model system with approaches including: Quantitative genetics (GWAS/QTL mapping) High-throughput phenotyping RNA-seq and multi-omics integration Functional genomics (e.g., RNAi
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
research. The Gordon Lab in the Department of Biology studies development, cell biology, cell migration, reproductive system biology, and genetic control thereof in the nematode worm C. elegans. We
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or amyloid research, with a strong background in optical spectroscopy and microscopy. Expertise in in vivo models (e.g. C. elegans, mouse) of the above-mentioned areas is highly desirable. The terms
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Do you want to work with extracellular vesicles and C. elegans as model system. Do you see yourself as a team player who is strong in collaboration? If yes, we look forward to reading your
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biology, genome engineering, CRISPR-based screening, functional genomics, or C. elegans genetics are particularly encouraged to apply. Minimum Education and Experience Ph.D in a related field. Candidates
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the mechanisms of novel light-gated ion channels. Working closely with team members and collaborators specializing in rational protein engineering, protein reconstitution, ultrafast spectroscopy, and C. elegans
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development. Candidates with expertise in cell biology, genome engineering, CRISPR-based screening, functional genomics, or C. elegans genetics are particularly encouraged to apply. Create a Job Match for
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Princeton Neuroscience Institute. The lab performs precision measurements of brain activity and behavior in the nematode C. elegans as well as the fruit fly Drosophila melanogaster. The ideal candidate is an
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drivers of Inflammatory Bowel Disease (IBD). This position offers an exciting opportunity to work on a cutting-edge, NIH-funded project that combines high-throughput genetic screening in C. elegans with
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within the Department of Physics and the Princeton Neuroscience Institute. The lab performs precision measurements of brain activity and behavior in the nematode C. elegans as well as the fruit fly