The frequencies of the four alleles contributed to the child by possible father F1 in Problem 7 are 0.18, 0.23, 0.13, and 0.14. Calculate the Combined Paternity Index (CPI) for the four genes in this analysis.
Ch. 15 - Recombinant DNA Technology and Its Applications

15장, 문제 E.9
Additional STR allele frequency information can be added to improve the analysis in Problem 8. The frequency of D8S1179₁₂ = 0.12. The frequency of D16S539₁₈ = 0.08 and of D16S539₂₀ = 0.21. Lastly, D18S51₁₉ = 0.13 and D18S51₂₀ = 0.10. Combine the allele frequency information for these three STR genes with the information used in Problem 8 to calculate the frequency of the genotype for six of the STR genes.
검증된 단계별 안내1
Identify the alleles for each of the three STR loci given: D8S1179 with allele 12 (frequency 0.12), D16S539 with alleles 18 (frequency 0.08) and 20 (frequency 0.21), and D18S51 with alleles 19 (frequency 0.13) and 20 (frequency 0.10).
Recall the allele frequencies from Problem 8 for the other three STR loci to have a total of six STR loci for the genotype frequency calculation.
Determine the genotype frequencies for each locus by applying the Hardy-Weinberg principle: for homozygous genotypes, use where is the allele frequency; for heterozygous genotypes, use where and are the frequencies of the two different alleles.
Calculate the genotype frequency for each of the six STR loci separately using the allele frequencies, including the new alleles provided for the three loci in this problem.
Multiply the genotype frequencies of all six STR loci together to obtain the combined genotype frequency for the six STR genes, assuming independence between loci.

비슷한 문제에 대한 검증된 영상 답변:
이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
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주요 개념
질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.
Short Tandem Repeats (STRs)
STRs are repeating sequences of 2-6 base pairs of DNA that vary in length among individuals. They are highly polymorphic markers used in genetic profiling and forensic analysis. Each STR locus can have multiple alleles, and their frequencies in a population help calculate genotype probabilities.
추천 영상:
가이드 코스
Duplications
Allele Frequency and Genotype Frequency
Allele frequency is the proportion of a specific allele among all alleles at a genetic locus in a population. Genotype frequency refers to the proportion of individuals with a particular combination of alleles. Calculating genotype frequency often involves combining allele frequencies, assuming Hardy-Weinberg equilibrium.
추천 영상:
가이드 코스
New Alleles and Migration
Multiplying Independent Loci Frequencies
When calculating the combined genotype frequency across multiple STR loci, the frequencies at each locus are multiplied together if loci are independent. This product gives the overall probability of observing a specific multi-locus genotype, which is essential in forensic and population genetics analyses.
추천 영상:
가이드 코스
Multiple Cross Overs and Interference
관련 실천
교과서 질문
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교과서 질문
Figure E.1 illustrates the results of an electrophoretic analysis of 13 CODIS STR markers on a DNA sample and identifies the alleles for each gene. Table E.2 lists the frequencies for alleles of three of the STRs shown in the figure. Use this information to calculate the frequency of the genotype for STR genes FGA, vWA, and D3S1358 given in Figure E.1.
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교과서 질문
Chimeric gene-fusion products can be used for medical or industrial purposes. One idea is to produce biological therapeutics for human medical use in animals from which the products can be easily harvested—in the milk of sheep or cattle, for example. Outline how you would produce human insulin in the milk of sheep.
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교과서 질문
Why are diseases of the blood simpler targets for treatment by gene therapy than are many other genetic diseases?
440
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교과서 질문
Compare methods for constructing homologous recombinant transgenic mice and yeast.
481
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교과서 질문
The frequencies of the four alleles contributed to the child by possible father F1 in Problem 7 are 0.18, 0.23, 0.13, and 0.14. Make a statement about the possible paternity of F1 based on this analysis.
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