Want to know:
9.12 Describe the steps you would take to obtain a null allele in your favorite yeast gene (YFG) using homologous recombination if you have available a yeast strain that is sensitive to the antibiotic kanamycin, pBluescript II plasmids (see Chapter 8, p. 176) with the DNA inserts diagrammed in Figure 9.B, and are able to transform yeast with a targeting vector, once you construct it. In Figure 9.B, EcoRI, HaeII, HindIII, and PstI are restriction enzymes (see Chapter 8, p. 174) that cleave these DNAs at the sites shown, and the distances between the sites aregiven in kb. As part of your answer, diagram the targeting vector you would construct and the structure of the chromosomal region once YFG is knocked out using this targeting vector. Also, describe how you would use PCR to confirm that you had obtained a null allele at the gene, and indicate on your diagrams the regions you would use for designing PCR primers. Remember that the absence of a PCR product does not provide strong evidence for a specific DNA arrangement, as a PCR could fail for any number of reasons.
Get a detailed, AI-powered explanation for this question and thousands more on StudyFetch.
Get the Answer for FreeHow StudyFetch Helps You Master This Topic
AI-Powered Answers
Get instant, detailed explanations powered by AI that understands your course material.
Deep Understanding
Go beyond surface-level answers with step-by-step breakdowns and examples.
Personalized Learning
Spark.E adapts to your learning style and helps you connect ideas.
Practice & Test
Turn any question into flashcards, quizzes, and practice tests to solidify your knowledge.
Explore More Questions
- Why I'd bootstrapping commonly used to test the accuracy of a tree?a. it can determine the robustness of the tree placement b. it can test consistency of a clade placementc. it can test how efficiently a tree was made d. all of these
- What keyboard keys are used to scroll through the command history in the terminal?
- Illumina sequencing involves the incorporation of fluorescent nucleotides into DNA that distinguish A, C, T, and G.