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a variety of bioinformatic tools and software to analyze bacterial genomes for the purpose of outbreak investigations and local, national, and international bacterial epidemiology. Collaborating
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, improving prediction of evolutionary trends, and integrating multiple data types for enhanced surveillance. Gaining advanced training in the use of bioinformatics platforms, phylogenetic and phylodynamic
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Manhattan, Kansas, invites a highly motivated postgraduate participant to engage in advanced bioinformatics research on two of the world’s most dangerous emerging pathogens: Nipah virus (NiV) and Crimean
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been received within the past five years or is currently pursing. Preferred skills: Detailed, demonstrable experience with computational biology, particularly bioinformatics, in "omics" projects such as
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. What will I be doing? As the selected candidate, you will participate in research using a variety of molecular biology assays and bioinformatic tools to analyze malaria parasite genomes for the purpose
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of the relevant fields (e.g. Plant Pathology, Mycology, Microbiology, Population genetics, Genomics, Bioinformatics or related science). Preferred Qualifications: Strong background in fungal biology & genetics
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of the agency is to provide global leadership in agricultural discoveries through scientific excellence. Research Project: The fellow will be involved in bioinformatics and statistical analysis in genetics
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studies supporting research on high-consequence and emerging pathogens. Gain hands-on training in molecular biology, virology, ecology, or bioinformatics methods depending on the project. Learn to collect
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for participants seeking to expand their expertise in molecular biology, virology, ecology, or bioinformatics while contributing to projects of national importance. Learning Objectives: Under the guidance of a
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uptake. This research opportunity will focus on a targeted gene design, bioinformatics approach, to develop coding and noncoding sequence elements for stabilizing mRNAs for in vivo delivery. These mRNAs