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various organoid and cell culture methods, primary cell isolation, imaging and sequencing techniques) with capability in using computational tools (competent with R, python and command line tools) and are
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host plants, rearing of caterpillars from egg stage on the different plants, gut dissection and RNA extraction of gut tissue, and library preparation for RNA sequencing. After that, the successful
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esophageal organoids from both healthy and inflamed epithelium. You will characterize how inflammation impacts organoid development and architecture using IF and single-cell sequencing. In addition, you will
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the compositional genomic analyses in over a dozen sequencing consortia, whose results were published in Science, Nature, PNAS, and Genome Research. Dr. Elhaik's lab is famous for its population genomics and
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tetramers, BCR/TCR sequencing, single-cell multi-omics (RNA/ATAC/CITE/TCR-seq), and functional assays to map antiviral responses at high resolution. This project will be carried out as a close collaboration
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molecular tools (e.g., CRISPR-based genome engineering), computational algorithms, and DNA/RNA sequencing and synthesis to design useful cell behaviors. The scope of this project is to combine multi-gene
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The supervisor for this position, Dr. Eran Elhaik, led the compositional genomic analyses in over a dozen sequencing consortia, whose results were published in Science, Nature, PNAS, and Genome
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central role in conducting laboratory-based experimental work using clinical samples, with a particular emphasis on microRNA profiling and whole-genome or exome sequencing, including metagenomic approaches
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esophageal tissue using a variety of mouse models, organoid co-cultures and spatial sequencing technologies to identify relevant cell-cell interactions. We seek a curious, highly motivated, and creative
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driven evolution and biodiversity concerns research that takes advantage of the massive data streams offered by techniques such as high-throughput sequencing of genomes and biomes, continuous recording