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-consequence pathogens of biodefense interests. Learning non-infectious surrogate viral systems, including pseudotyped viruses, minigenome systems, and virus-like particles (VLPs). Learning the operational
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(AMPV). New AMPV subtypes have recently been detected for the first time in the U.S. and continue to spread across all poultry sectors. Vaccination is one of the most effective control measures and is
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field strains to inform vaccine selection and effectiveness. Build collaborative research skills within a multidisciplinary team focused on avian-influenza vaccinology, pathobiology, diagnostics, and
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USDA-ARS Postdoctoral Research Opportunity: Development of Novel Vaccines for Poultry Viral Diseases
performance and effectiveness. Through these learning objectives, you will develop a robust skill set in virology, molecular biology, and vaccine development, contributing to advancements in avian disease
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research that is responsive to Department of Defense and U.S. Army requirements and delivers lifesaving products including knowledge, technology and medical material that sustain the combat effectiveness
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dye fixation. Understand how to determine which fiber traits most strongly influence dye behavior and explore potential links to plant genetics. Understand how to engage effectively within a
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, insect activity, or physical breakage before problems become widespread and result in significant economic losses. This research opportunity includes participating in field deployments in pilot-scale
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environmental stresses will help food regulators in making science-based decisions and help in the development of more effective intervention technologies to improve food safety and shelf-life. Specific project
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fungal ecology with toxin outcomes. Conducting field and greenhouse experiments to identify and evaluate the effects of factors that influence mycotoxin risk Integrating computational and statistical tools