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RECOMBINANT DNA TECHNOLOGY PART 2 Quiz Essay 2 Topics Molecular Topics: 35 points Emphasis: data interpretation, critical thinking with a short answer format ■ Bacterial transformation ■ Plasmid isolation ■ Translation: genetic code table ■ Lac operons: mutational analysis ■ Recombinant DNA technology Genetics’ Topic 15 points ■ Genetic Fine Structure Topics • Cloning & Finding cloned genes – Using bacteria – Using viruses • Genomic libraries • Transgenic plants • Transgenic animals • Timely topics Technique: Cloning of specific genes or DNA fragments = restriction enzyme + = ligase Cut vector Cut foreign DNA or gene Paste together 2 different antibiotic resistant genes Bacteria are now resistant to 2 antibiotics Bacterial cloning using plasmids Cut DNA here & insert foreign DNA Will your transformed colonies with the insert be white or blue? Summary of cloning DNA into a blue/white selection vector Cloning and finding desired clone • Clone into a virus • Infect bacteria • Identify infected bacteria containing gene – Assume you know the protein sequence Bacterial clones and finding desired clone Probe design Genomic library contains all of the organism’s genome Expression Vectors Expression vectors • Sources of proteins Transgenic Mice transgen Non-homologous recombination Linear DNA Knockout Mice G418 gancyclovir Homozygous knockout Phenotype of the knockout mouse gives information on protein function Applications of DNA technology • Agriculture • Drug design • Genetic testing • Gene therapy Genetic Modified Plants: “GM” Tobacco with luciferase gene from firefly Transgenic plant Tumor Inducing Plasmid Model for making transgenic plants • Bt toxin genes (from Bacillus thuringensis) introduced into corn, making it resistant to the European corn borer. • Millions acres of corn, cotton, and potatoes bearing Bt toxin are under cultivation. Transgenic Plants • In 1996: Soybeans resistant to the weed killer of Round Up.