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are to enhance barley and oat productivity, quality, and stress resilience by combing traditional, molecular, and genomics methods. You will collaborate with other scientists in the unit and other institutes
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expensive and dangerous health threats, and responds when these arise. Research Project: This fellowship provides mentor-guided training in molecular pathology for pathogen diagnostics and discovery
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dynamics of complex human and natural Earth-system interactions and to deliver actionable intelligence at scales and timeframes relevant to decision makers. As the Nation's largest water, earth, and
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USDA-ARS Molecular Biology Postdoctoral Fellowship in the Natural Products Utilization Research Unit
the use of natural products, either by discovering safer natural pesticides or by manipulating their production in plants by genetic engineering or other means. You will use plant molecular biology to
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USDA-ARS Molecular Biology Postdoctoral Fellowship in the Natural Products Utilization Research Unit
other means. You will use plant molecular biology to discover genes involved in the biosynthesis, transport, and metabolism of natural products with an emphasis on weed management and allelopathic
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located at the Wenatchee Forestry Sciences Laboratory. Research Project: You will participate in research that provides information about vegetation and coarse woody debris dynamics following wildfires and
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dynamics of Salmonella within pasture-based poultry production systems by integrating phenotypic characterization, whole-genome sequencing, and transcriptomic profiling. By advancing the understanding
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Respiratory Viruses Division (CORVD), National Center for Immunization and Respiratory Diseases (NCIRD), CDC. You will receive training in advanced molecular methods, next-generation sequencing (NGS), viral
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(RVFV). With mentor guidance, you will plan and execute complex experiments to study viral replication, pathogenesis, and transmission dynamics. Using a multidisciplinary approach, you will use or enhance
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post-harvest management practices, and develop methods to rapidly evaluate grain quality, using a combination of cutting edge tools, such as chemical ecology, molecular biology, and genomics