972 resultados para Frank, Ryan


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Dr. Zelma Lloyd Frank was very active in the Jefferson City community and received both her Bachelor’s and Master’s degrees from Lincoln University. She received her Doctorate in Education at The University of Missouri-Columbia. Dr. Frank is a member of Phi Delta Kappa, Kappa Delta Pi, and the International and State Association for Children with Learning Disabilities. She was a teaching and reading assistant for elementary students in Missouri, Massachusetts, and New York. She was very active with the Capital City Council on the Arts, Meals on Wheels, St. Mary’s Health Center Auxiliary, and the local High School PTA.

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14th President 1973-1982 (Nov.)

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In February, 1937, the Court, in an opinion by Chief Justice William F. Frank, issued their verdict that supported the Missouri statute that allowed for out-of-state tuition for Missouri blacks to continue their education if the desired program was not offered at Lincoln University Once again, the legal team of Lloyd Gaines was not undaunted.

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Filamentous fungi are a large group of diverse and economically important microorganisms. Large-scale gene disruption strategies developed in budding yeast are not applicable to these organisms because of their larger genomes and lower rate of targeted integration (TI) during transformation. We developed transposon-arrayed gene knockouts (TAGKO) to discover genes and simultaneously create gene disruption cassettes for subsequent transformation and mutant analysis. Transposons carrying a bacterial and fungal drug resistance marker are used to mutagenize individual cosmids or entire libraries in vitro. Cosmids are annotated by DNA sequence analysis at the transposon insertion sites, and cosmid inserts are liberated to direct insertional mutagenesis events in the genome. Based on saturation analysis of a cosmid insert and insertions in a fungal cosmid library, we show that TAGKO can be used to rapidly identify and mutate genes. We further show that insertions can create alterations in gene expression, and we have used this approach to investigate an amino acid oxidation pathway in two important fungal phytopathogens.

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