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, focusing on gene editing and molecular breeding techniques. While flowering in sugarcane is an undesirable trait for Florida farmers, it plays a crucial role in crossing and breeding. Through this learning
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Objectives: The selected fellow will learn to test, adapt/develop novel diagnostics, verify results, and conduct limited research on molecular and microbiological assays as needed. The fellow will also have an
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techniques and gene transfer platforms, like Agrobacterium mediated transformation, will be developed and utilized to introduce CRISPR reagents or other molecular components of interest to create the modified
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the underlying impacts of stressors on bee health and analytical skills for understanding colony level dynamics and predicting mass colony loss events. Learning Objectives: The fellow will learn and apply
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oat productivity, quality, and stress resistance by combing traditional, molecular, and genomics methods. The participant will be part of the research effort in the laboratory, greenhouse, and field
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to protect American agriculture. Learning Objectives: Under the guidance of a mentor, the fellow will learn techniques related to chemistry, molecular biology, and microscopy during the development phase and
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contamination, specifically colonization of dairy animals and contamination of dry dairy processing facilities. The participant will have the opportunity to investigate pathogen dynamics in dry dairy products
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investigate the complex molecular interactions between Infectious Laryngotracheitis Virus (ILTV) and the host immune system. As an alphaherpesvirus, ILTV causes significant economic losses worldwide through
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both laboratory and computational approaches for fish/shellfish-pathogen interaction dynamics and genomics research at the Aquatic Animal Health Research Unit (AAHRU). Research objectives of the AAHRU
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received in 2026. Preferred skills: Experience in disease ecology, evolutionary biology, virology, population genetics, molecular biology, or using quantitative approaches to study the evolutionary dynamics