Genetic application problem A couple in which the woman belongs to group 0 Rh- and the man is AB Rh + claim as theirs a baby whose blood is A Rh +. What would you think as a judge about this lawsuit? Explain...
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Genetic application problem
A couple in which the woman belongs to group 0 Rh- and the man is AB Rh + claim as theirs a baby whose blood is A Rh +. What would you think as a judge about this lawsuit? Explain...
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- Question:- The success of renal transplantation depends on three human histocompatibility genes, HLA-A, HLA-B and HLA-C, which must match between the donor and the receiver. A single mismatch may cause the kidney rejection. Each gene has multiple co-dominant alleles. These three genes are located very close to each other on chromosome 6, so that the recombination rate is very low (below 1%). The father has the following genotype: A1, A2, B24, B10, Cw4 and Cw7 and the mother is A1, A1, B11, B7, Cw5 and Cw8. Their first boy is A1, A1, B24, B11, Cw7 and Cw8. What is the probability that the second child is compatible with his/her brother?Need help, please. For the progeny phenotype(s), please name whether they are all sinistral or dextral.Retinoblastoma: The Hits Just Keep Coming Part IV – Time to Reconvene Question Since Julie is indeed a carrier of the mutated RB1 allele and Chris is homozygous for the wild-type allele, what is the likelihood that their next child will inherit Julie’s RB1 mutation? Part V – A Different Kind of Hit Question Chris does not have an RB1 mutation, and is therefore homozygous wild-type. Julie is heterozygous for the mutation. However, Kay has inherited a different RB1 mutation than the one her mother carries. Therefore, Kay did not receive her mother’s mutant allele. Assuming that Chris really is the father, what other explanation might there be for how she got a germline mutation?
- its itslearning /pdf-reader?job3D1617581334468 ... Tools ▼ A young woman in Hollywood sued a famous movie actor for support of her child, claiming that he was the father of her child. By typing the blood of the three persons involved, the following results were obtained: The child is type B; the Mother is type A; the Actor is type O. Could the actor have been the father? Explain. 5.I need some help completing this fill-in-the-blank. Each answer option is bolded and bracketed. 1. The purpose of the AMEL locus is [identification of ethnicity, determination of age, identification of gender], it is located in the [autosomes, sx chromosomes]. Females have only one peak originating from their [X only, Y only, X and Y] chromosomes and males have two peaks originating from their [X only, Y only, X and Y] chromosomes. 2. In the D8S1179 locus, Sophie is [homozygous, heterozygous] for allele with 13 copies. One copy of this allele came from her mother and the other copy came from [Sam or Bill, Sam or Harry, Bill or Harry, Sam Bill or Harry(Either 3)] 3. In the D21S11 locus, Sophie's allele [28, 30] came from the mother and her other allele, 28, came from [Sam only, Bill only, Harry only]. 4. In the D18S51 locus, Sophie's paternal allele came from [Bill only, Bill and Harry, Sam Bill or Harry (Either 3)]. 5. You already know Sam, Bill and Harry are related to one another.…Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the solid line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the solid line.
- Instruction - Please answer them correctly - Please answer all of them, they are connected. PEDIGREE ANALYSIS and SYMBOLOGY Examine the pedigree which has X linked Dominant inheritance of disorder. Use letter X* (asterisk denotes disorder) as genotype of the individuals which can be XX, XY, X*X*, X*X and X*Y. a. What is the genotype of IV-6? b. What is the genotype of III-6? c. What is the genotype of II-3? d. What is the genotype of III-8? e. If couple I-1 and I-2 will have a son, what is the probability of having the disorder? f. If couple III-8 and III-9 will have another child, what is the probability of having the disorder? g. Theoretically, if individual IV-3 and individual IV-5 will marry and will have a child, what is the probability of having a child without the X-linked disorder?Question:- 8. Describe how Morgan’s experiment with the white-eyed mutant fly provided evidence for the chromosomal basis for inheritance. Be sure to include the significance of the x-linked gene.Question: The disorder: Red-Green color blindness Explain the mode of inheritance of the disorder (recessive, dominant, x-linked, etc.) . Can a person be a carrier of this disorder? • Describe the probability of having a child with the disorder -- give a specific scenario (ex. both parents are heterozygous for the trait) • Describe the symptoms associated with this disorder Explain the prognosis of a person born with this disorder
- Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line.Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. Please show in the actual punnett square table!Problem 3. If a woman is hemophiliac, she will give birth to only hemophiliac sons regardless of the genotype of the father. Construct a Punnett squares to confirm this. There should be two of them. a) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. b) Construct a Punnett Square - List gametes in the area with the dashed line and the genotypes of the offspring in the area with the sold line. Please show with BOTH PUNNETT SQUARES THERE SHOULD BE TWO!!!!