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USDA-ARS Molecular Biology Postdoctoral Fellowship in the Natural Products Utilization Research Unit
Project: The Natural Products Utilization Research Unit develops natural products for use in agriculture, producing more toxicologically and environmentally benign pest management tools and improving
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apply molecular biology concepts to characterize immunoglobulin-E (IgE) binding to food allergens. Learning Objectives: Under the guidance of your mentor, you will: Develop knowledge of the sequence and
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, and problems. Research Project: You will train to advance several key research objectives, including: Improving understanding of how meteorological forcing and climate variability influence snow
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Control (DCPC). Our mission is to generate and translate high-quality scientific evidence that advances population-based cancer prevention and control. Through research, program evaluation, implementation
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PGITRU unit members, especially the Temperate-adapted Forage Legume program. You will liaise with other established USDA ARS collaborators including Breeding Insight and alfalfa research collaborators in
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the production, value, and safety of pecan, peach, nectarine, and plum crops. Research Project: This overall project is focused on developing small ruminant grazing systems in pecan orchards. You will gain
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tools. The opportunity is designed to provide a mentored learning environment centered on technical skill development, applied research experience, and increased understanding of AI-enabled systems and
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assessment and scientific knowledge development within a federal research setting. Learning Objectives: Through this mentored research experience, you will develop knowledge and research skills in
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will develop hands-on experience in plant physiology, nutritional assessment, disease severity evaluation, transcriptomic and metabolomic analysis, and scientific data interpretation. You will also gain
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to reduce crop losses and enhance sustainability. In alignment with ARS National Program 301, we aim to leverage plant genetic diversity and genomics to develop improved germplasm and breeding tools