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to, big data mining, protein structure and function prediction, protein-ligand interaction, molecular modeling, molecular toxicology, workflow development, gene knockout design and optimization, and genetic
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enemies for development of effective biological control strategies and associated technologies against high-impact invasive insect pests such as spotted lanternfly, Lycorma delicatula (order Hemiptera
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in vitro and in vivo infection models, flow cytometry, ELISA, western blots, and multiplex immunoassays. Our projects rely on successful partnerships with collaborators across academia and government
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the mentor’s guidance, the participant will design and conduct experiments in the laboratory and the field and use data to test and validate predictive models. Interaction with stakeholders and research
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involved in the design and validation of novel, science-based interventions—such as biological controls using plant-derived bioactive compounds—to reduce pathogenic bacterial loads and mitigate virulence
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into kinetic models and computation fluid dynamics-based fire behavior simulators. Ultimately, this new knowledge will guide the implementation of new characterizations of live fuels in fire behavior models and
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), National Animal Disease Center, Virus and Prion Research Unit, located in Ames, Iowa. For an introduction to the Flu crew at the National Animal Disease Center, please see: https://youtu.be/kOJy8tFTuiI About
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Objectives: Under guidance of a mentor, the participant will: Acquire or improve their ability to predict important plant-microbe associations based on computational data and supplemental bioassays; Learn
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. As a subordinate element of the U.S. Army Medical Research and Development Command (USAMRDC), the institute conducts research for development of medical countermeasures to treat exposure to various
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abiotic factors affect the survival of beneficial/pest insects under, and in response to, varying abiotic conditions to better predict changes in their spatial distribution across agricultural and