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collaboration with plant pathologists, geneticists, and bioinformaticians, and there may be opportunities to contribute to interdisciplinary projects as they align with the lab’s goals. While creativity and
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opportunity to learn about zoonotic diseases, their impact on trade, learn surveillance procedures, diagnostic testing methodologies and algorithms, whole genome sequencing, and molecular epidemiology. Mentor(s
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advanced DNA sequencing technologies; Understand the biology and ecology of invasive weed pathosystems and; Improve their written and oral communication skills. Mentor(s): The mentor for this opportunity is
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acid purification, amplification, Sanger and next generation sequencing, etc. Field, greenhouse, and benchtop research practices Mentor(s): The mentor for this opportunity is Sharon Andreason
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, and to understand the molecular mechanisms through which these microbes act to improve agricultural outcomes. Through a variety of techniques including microbiome profiling, host RNA sequencing, plant
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or post-bac level that is interested in expanding research experience in insect genomics and genome sequencing. The research focus is on genomics of tropical and subtropical pest insect species. The lab
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or post-bac level that is interested in expanding research experience in insect genomics and genome sequencing. The research focus is on genomics of tropical and subtropical pest insect species. The lab
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assays may include ex vivo, in vitro, and in situ techniques, such as histology tissue processing, nucleic acid isolations, flow cytometry antibody staining, qPCR, ELISA, bulk RNA sequencing, single-cell
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high-containment (BSL-2) environments, including conducting vaccine safety and efficacy trials. Bioinformatics: Familiarity with computational tools for NGS sequence analysis, transcriptomics (RNA-seq
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laboratory techniques, including Sanger sequencing and Next Generation Sequencing, emphasizing precision and accuracy in data generation. The fellow will also learn to analyze sequencing data using statistical