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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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research aimed at improving seed regeneration methodology, phenotypic, and genotypic characterization of the USDA maize germplasm collection. Systematic and thorough genotypic and phenotypic characterization
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resistance and grain quality in wild and cultivated barley populations. In addition, you will also participate in the collaborative wild barley genomics project and characterize useful genes in wild barley
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project to isolate, synthesize, and bioassay natural products that mediate plant-insect interaction. Project activities include 1) the chemical characterization of mealybug pheromones and 2) the development
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environmental factors associated with CKD incidence and trends. Apply advanced statistical and machine learning methods, including semi-supervised cluster analysis, to characterize populations with diabetes and
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predictive modeling, to identify distinct phenotypes of diabetes and characterize factors associated with disease onset, progression, complications, and mortality. Gain experience analyzing administrative
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interest in responses to the beet curly top virus, Rhizomania disease, as well as early seedling freezing tolerance. As part of this project, you will have the opportunity to characterize diverse accessions
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systems. Activities may include collecting and analyzing experimental data; utilizing advanced optical diagnostic methods, high-speed imaging systems, and engineering instrumentation to characterize
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towards the development of improved rootstocks for pear production. Research Project: The overall goal of this research project is to characterize root system architecture and root developmental traits
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and germplasm for characterizing traits of interest and their underlying physiological mechanisms through experiments and integrate desirable traits/\mechanisms into pre-breeding lines to support the