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Field
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students or research staff. The Successful Candidate Will Demonstrate intellectual curiosity and the ability to connect questions across microbiology, phage biology, vector biology, and host-pathogen biology
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. The Fellow will also investigate the cellular mechanisms of drug synergy in M. tuberculosis. Among the key duties of this position are the following: Cultures pathogenic viruses and quantitates using plaque
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and other BSL2 and BSL3 pathogens including select agents. Designs and tests novel prodrugs against tuberculosis and other BSL2 and BSL3 pathogens. Performs genetic manipulations of M. tuberculosis and
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Texas A&M University. Responsibilities: • Design and conduct experiments with honey bees and associated parasites and pathogens • Use molecular biology, microbiology, and omics-based approaches to study
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how ERAP2 shapes pathogenic immune responses and if this can be corrected with small molecular inhibitors. This project aims to test whether targeting ERAP2 can selectively remove pathogenic EBV
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. Our research program seeks to identify novel pathways used by bacteria to cause infection. One major area of research interest is how human pathogen Clostridioides difficile establish colonization and
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. Department faculty conduct innovative research on infectious diseases, host-pathogen interactions, and microbial biology while contributing to the education and training of veterinary and graduate students
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the mechanisms underlying durable viral control, with particular emphasis on antibody-mediated enhancement of T-cell immunity, Fc-dependent immune activation, and host-pathogen interactions. Beyond HIV, the group
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of transportation on the behavior and physiology including immune response, pathogen prevalence, and pesticide resistance of honeybees. The research focuses on how transportation affects honeybee health by
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at the forefront of plant immunity, effector biology, and sustainable crop improvement. The molecular interaction of pathogen effectors and plant immune receptors is key to understanding disease resistance. We use a