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
18. Molecular Genetic Tools
Methods for Analyzing DNA
4:14 minutes
Problem 7c
Textbook Question
Textbook QuestionThe results shown are from a DNA test for four genes used in a paternity identification case. DNA for the mother (M) and her child (C) are shown along with DNA from two possible fathers, F1 and F2. In the 'C' column, label the DNA bands contributed by the mother with 'M' and the DNA bands contributed by the father with 'F.'
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Key Concepts
Here are the essential concepts you must grasp in order to answer the question correctly.
DNA Structure and Function
DNA, or deoxyribonucleic acid, is the hereditary material in humans and almost all other organisms. It consists of two strands forming a double helix, with each strand made up of nucleotides containing a sugar, phosphate group, and a nitrogenous base. The sequence of these bases encodes genetic information, which is crucial for understanding how traits are inherited and how paternity can be established through genetic testing.
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Genetic Inheritance
Genetic inheritance refers to the process by which genetic information is passed from parents to offspring. In humans, each child inherits half of their DNA from their mother and half from their father. This concept is essential for paternity testing, as the child's DNA profile should show a combination of alleles from both parents, allowing for the identification of biological relationships.
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DNA Profiling
DNA profiling, also known as DNA fingerprinting, is a technique used to identify individuals based on their unique DNA characteristics. In paternity cases, specific regions of DNA are analyzed to compare the genetic markers of the child with those of the potential fathers. The presence of matching bands in the DNA test results indicates a biological relationship, while discrepancies can help exclude non-biological fathers.
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