Table of contents
- 1. Introduction to Genetics51m
- 2. Mendel's Laws of Inheritance3h 37m
- 3. Extensions to Mendelian Inheritance2h 41m
- 4. Genetic Mapping and Linkage2h 28m
- 5. Genetics of Bacteria and Viruses1h 21m
- 6. Chromosomal Variation1h 48m
- 7. DNA and Chromosome Structure56m
- 8. DNA Replication1h 10m
- 9. Mitosis and Meiosis1h 34m
- 10. Transcription1h 0m
- 11. Translation58m
- 12. Gene Regulation in Prokaryotes1h 19m
- 13. Gene Regulation in Eukaryotes44m
- 14. Genetic Control of Development44m
- 15. Genomes and Genomics1h 50m
- 16. Transposable Elements47m
- 17. Mutation, Repair, and Recombination1h 6m
- 18. Molecular Genetic Tools19m
- 19. Cancer Genetics29m
- 20. Quantitative Genetics1h 26m
- 21. Population Genetics50m
- 22. Evolutionary Genetics29m
4. Genetic Mapping and Linkage
Mapping Genes
0:37 minutes
Problem 28d
Textbook Question
Textbook QuestionA number of human–mouse somatic cell hybrid clones were examined for the expression of specific human genes and the presence of human chromosomes. The results are summarized in the following table. Assign each gene to the chromosome on which it is located.
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
Somatic Cell Hybridization
Somatic cell hybridization is a technique used to combine two different types of cells, typically from different species, to create a hybrid cell. This process allows researchers to study gene expression and chromosome behavior in a controlled environment. In the context of the question, human-mouse hybrids are used to identify the location of specific human genes on human chromosomes.
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Gene Mapping
Gene mapping is the process of determining the specific locations of genes on chromosomes. This involves analyzing the expression of genes in hybrid cells to correlate them with the presence of specific chromosomes. Understanding gene mapping is essential for assigning genes to their respective chromosomes, as indicated in the question.
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Chromosomal Analysis
Chromosomal analysis involves examining the structure and number of chromosomes in a cell. This can include techniques such as karyotyping or fluorescence in situ hybridization (FISH) to visualize chromosomes and identify specific genetic material. In the context of the question, chromosomal analysis is crucial for confirming the presence of human chromosomes in the hybrid clones and linking them to gene expression.
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