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laboratory operations with specific and expanded opportunities associated with microscopy using a Keyence Imaging System, enzyme kinetic assays using microbial cultures, supernatants and/or extracts, and
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of the mentor, the participant will be involved in conducting in vitro and/or in vivo (animals) experiments evaluating microbial colonization factors and host responses, characterizing bacteria/bacterial
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, microbial ecology, and plant biology. Several ongoing projects are available and are adaptable to your interests and educational requirements: (1) classifying microbiome response in rhizosphere and
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-fumigant methods for disease control. Methods employed will provide training opportunities in the disciplines of plant pathology, microbial ecology, and plant physiology. Outcomes from research are expected
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this opportunity is the characterization of honey bee viromes through Next Generation Sequencing technologies (NGS) to uncover previously undescribed viral and other microbial threats to bee health. This unique
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approaches used to support reliable pathogen detection. This project aligns with IDPB’s public health mission to develop, improve, evaluate, and apply laboratory technology to detect microbial agents
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of microbial genetics and physiology to optimize fermentation strategies through novel strain development and modification of bioprocessing parameters. Learning Objectives: You will gain experience in
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experience in implementing experiments to develop novel methods of controlling economically important arthropod pests and gastrointestinal nematodes in goats. Methods will be focused on microbial biocontrol
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within the past five years. Preferred skills: Coursework or experience in genetics, molecular diagnostics (e.g., PCR, sequencing preparation), insect identification, or microbial screening. Fieldwork
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associated with complex food matrices and detection of low levels of pathogens in the presence of background microbial flora. Develop skills in evaluating approaches designed to reduce or eliminate culture