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In the ABO blood group, type A has three subtypes with an order of dominance shown as A 1> A 2> A 3
What are the genotypes of each subtype?
(Make sure the alleles are big and clear enough to show the superscripts.)
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- A group of people are studiedd with made up blood types AZ blood group which is a blood type controlled by a single gene with two loci. Indivuals in this group may be “D” ( = that their homozygous for the “D” allele) “Z” = homozygous for the “z” allele. *DZ= Heterzygous ** Total Number of people with each type 102 people have D type blood 96 have blood type DZ 31 people in this group have type “Z” QUESTION Now please calculate the allele frequencies of “D”and “Z” In doing so use variable “P”= to represent “D” allele And “q”= to represent “Z” allele Calculate the genotype frequencies expected in the population based of the q and p frequencies you calculate. A)frequency of the “Z” allele in the population ________ B)Frequency of the “D” allele in the populations__________ C)A number of expected individuals with the “DD” genotype in the population? __________ D) NUMBER OF EXPECTED INDIVIDUALS WITH THE “ZZ” GENOTYPE IN THE POPULATION?_______ E) A NUMBER OF EXPECTED…In the ABO blood group, type A has three subtypes with an order of dominance shown as A 1> A 2> A 3 a. What are the genotypes of each subtype? Make sure the alleles are big and clear enough toshow the superscripts. b. Is it possible for a types A 1 and A 3 parents to have a type A 2 child? Show the complete cross.Pretending that Park shin-hye is heterozygous for A blood type marries Choi Tae-joon whose blood type is O. Show the possible blood types of their future children. 1. P1: 2. Punnett Square: 3. Genotype symbols: 4. Genotype in words: 5. Genotypic ratio: 6. Genotypic %: 7. Phenotype symbols: 8. Phenotype in words: 9. Phenotypic ratio: 10. Phenotypic %:
- The ABO blood group has three different alleles: F, P, and i. The genotypes and phenotypes (blood types) for different combinations of the three alleles are shown the table. Possible Genotype and Phenotypes of ABO Blood Group Phenotypes Genotypes (Blood types) AJA or Ai Type A Type B |Туре О Type AB B|B or 1Bi AJB What percentage of offspring from a cross between a homozygous Type A parent with a heterozygous Type A parent is expected to contain the i allele? O A 25% O B. 50% Ос. 75% O D. 100% acerIn humans the ABO blood system is controlled by multiple alleles. Allele Ia produces antigen A, alleles Ib produces antigen B, and allele i produces no antigen. The hierarchy of dominance is Ia = Ib> i. A) Can a person of blood group 0 give blood from a person AB? Clearly explain your answer (presence or absence of antigens, or antibodies).Write the genotype for each person based on : -Homozygous for B allele -Heterozygous for A allele -Type O -Type A and had a type O parent -Type AB -Blood that can be donated to anybody -Can only received blood from a type O donor There is a couple, the blood type of a male is A+ and the female is o+. What are all the possible blood types of their children in the future? Illustrate the inheritance in a Punnett Square showing all the possible blood types from the offspring of the male and female.
- The allele for red flowers (R) and blue flowers (B) show incomplete dominance producing the heterozygote phenotype of purple flowers. Complete Punnett square and answer the questions for the cross between two purple flowers (RB x RB). R В What is the probability of having red flowers? R What is the probability of having purple flowers? B What is the probability of having blue flowers? :: RR : RB : BB :: 0% :: 25% :: 50% :: 75% :: 100%TTGG ttgg F1 TG tg F2 TtGg Which types of genotypes are represented in F1 and F2 in the above figure, respectively? heterozygous and heterozygous heterozygous and homozygous homozygous and heterozygous homozygous and homozygousSeveral genes in humans in addition to the ABO gene(I) give rise to recognizable antigens on the surface ofred blood cells. The MN and Rh genes are two examples. The Rh locus can contain either a positive or anegative allele, with positive being dominant to negative. M and N are codominant alleles of the MN gene.The following chart shows several mothers and theirchildren. For each mother-child pair, choose the fatherof the child from among the males in the right column, assuming one child per male.Mother Child Malesa. O M Rh(pos) B MN Rh(neg) O M Rh(neg)b. B MN Rh(neg) O N Rh(neg) A M Rh(pos)c. O M Rh(pos) A M Rh(neg) O MN Rh(pos)d. AB N Rh(neg) B MN Rh(neg) B MN Rh(pos)
- A woman who has blood type A positive has a daughter who is type O positive and a son who is type B negative. Rh positive is a trait that shows simple dominance over Rh negative and is designated by the alleles R and r, respectively. A third gene for the MN blood group has co dominant alleles M and N. If both children are of blood type M in addition to their ABO blood type, list all of the possible parental phenotypes for the ABO, MN and Rh traits.A woman who has blood type A positive has a daughter who is type O positive and a son who is type B negative. Rh positive is a trait that shows simple dominance over Rh negative and is designated by the alleles R and r, respectively. A third gene for the MN blood group has codominant alleles M and N. If both children are of blood type M in addition to their ABO blood type, list all of the possible parental phenotypes for the ABO, MN and Rh traits.A couple consulted a genetic counselor and they found out the following: Basha: A blood type, blue eye color, normal skin condition, carrier of cystic fibrosis gene, and carrier of hemophilia gene Popoy: B blood type, has brown eye color, normal skin condition, carrier of cystic fibrosis gene and negative to hemophilia. Clues for the table: • Blood Type: The probability that they’ll have an offspring with blood type the same as Popoy is 25% only • Eye Color: The probability that they’ll have an offspring with brown eye color is 75%. • Skin condition: The probability that their offspring will be an albino is 25% What is the probability that the offspring will have/ be: A. a girl with all the same phenotype as her mother. B. 2 girls with neither the blood type of the parents. C. 2 boys with normal skin color and carrier of cystic fibrosis gene; 1 girl with normal skin color and negative to cystic fibrosis. D. 2 girls carrier of both cystic fibrosis gene and hemophilia, a boy † positive…