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organism C. elegans to identify new mediators of this transcription stress response. These new mediators will subsequently be functionally characterized using genetic and cell biological analysis, in
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complete neuronal wiring diagrams of two sexes in the nematode C. elegans, the department has stood out through its diversity of thought, scientific questions and the experimental systems to answer them
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/suspension, ants, C. elegans, Drosophila, zebrafish, and mice, using conventional chemical fixation, microwave techniques, high-pressure freezing, and freeze-substitution. We offer semi-thin and ultra-thin
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mechanochemically-driven cell polarization evolves. You will focus on polarization of the C. elegans one-cell embryo, which is essential for establishment of one of the main body axes. This polarization event
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Institute of Microbiology is seeking a postdoctoral associate to participate in our studies of reproductive biology in the C. elegans model system. Specifically, the candidate will contribute to our
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for the model nematodes C. elegans and C. remanei . Associated projects entail CRISPR/Cas9 genetic engineering, experimental evolution, genomics, and field sampling. The selected candidate will also mentor
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C. elegans and its natural parasites. Associated projects entail evolve-and-resequencing, quantitative trait mapping, and field sampling with spatial analyses. The selected candidate will also mentor
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zebrafish, mouse, C. elegans, and more recently humans. This is a novel and quickly developing field of research where many open questions remain to be addressed including 1) the nature and trafficking
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of specific DNA repeats. We are seeking motivated candidate who has experience in the following aspects: Biology of C. elegans; cell culture particularly induced pluripotent stem cells and neurons; recombinant
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Independently conduct molecular cloning, mutagenesis, protein purification, protein characterization, protein engineering and design, enzyme kinetics, protein crystallization. Microbiology assays, including C