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at CRAG (from basic science to applied research using plant experimental model systems, crops and farm animals) make extensive use of genomic technologies and large sets of genetic and genomic data (https
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molecular tool to ex-vivo engineering cells (CRISPR) 4. In vivo testing of optogenetics tools 5. Development of virus-based gene delivery methods 6. Mentoring Graduate and Undergraduate Students Required
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differentiation, genetic engineering with CRISPR, disease modeling, transplantation into animal models of diabetes, biomedical engineering, bioinformatics, and single-cell sequencing technologies. Job Description
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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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and/or MD (or equivalent) degree in hand by start date. Preferred applicants will have a background in molecular biology (e.g., CRISPR/Cas9, lentivirus, adenovirus), lipid signaling, lipidomics, or RNA
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a novel multi-omics approach that integrates high-throughput imaging and machine learning methods with CRISPR/Cas9 screens and saturation mutagenesis to answer central questions about the
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Website: https://hellerlab-stanford.net/(link is external) (link is external) https://med.stanford.edu/stankovic-lab.html(link is external) (link is external) How to Submit Application Materials: Please
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specializes in precision cardiovascular medicine, leveraging cutting-edge approaches such as human iPSC-derived 2D cardiovascular cells, 3D vascularized cardioids, CRISPR gene editing, high-throughput CRISPRko
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into natural environments to track plants’ remarkable capacity to optimize development to their surroundings now and in the future. More information about ongoing research can be found on our website: https
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including single-cell genomics by next-generation sequencing, in situ single-cell analyses of DNA and RNA by Fluorescent in situ Hybridization (FISH), and CRISPR gene editing to induce genomic instability and