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- describe the effects of a blood type incompatibilitybetween mother and fetusFor the follow sets of parents, give what blood types are POSSIBLE. Parent 1 B+ A- O+ A+ O- Parent 2 O-AB- AB+ B+ O-write all the possible genotypes. for each (use I and ;): of these blood types, type A type B type AB type O
- Hemophilia is inherited as a sex-linked recessive trait. A non-hemophilic man marries a non-hemophilic woman whose father had hemophilia. With respect to this information, indicate all possible genotypes their children could possibly have. Show ALL work using punnett squares.If Pat's has type A blood & his mom has type O blood which of the following blood types must his dad have? О Туре В O Type O O Type ABA woman with blood type A can donate her full blood, including the serum, to individuals with any blood type. can donate her red blood cells to individuals with any blood type. can donate her red blood cells to individuals with blood type AB. can receive full blood from individuals with any blood type. can receive red blood cells from individuals with blood type AB.
- Introduction: A person’s blood type is an inherited trait governing special marker proteins appear-ing on the surface of their red blood cells. Blood typing is important, because it governs who anindividual can give or receive blood donations from; blood with proteins markers not present in theirown blood will be rejected by an individual’s immune system.There are two separate genes that govern blood type; the ABO gene has two dominant options, Aand B, and a recessive option called O. For example, an individual with AO or AA would presentthe A protein, and an individual with AB will present both the A and B proteins on their blood;an individual with OO has no proteins from this gene. The Rh gene has two options; the dominantoption is called positive (or + for short), while the recessive option is called negative or null (or –for short). For example, an individual with ++ or +– would present the Rh protein on their blood,while an individual with – – would not present the Rh…Introduction: A person’s blood type is an inherited trait governing special marker proteins appear-ing on the surface of their red blood cells. Blood typing is important, because it governs who anindividual can give or receive blood donations from; blood with proteins markers not present in theirown blood will be rejected by an individual’s immune system.There are two separate genes that govern blood type; the ABO gene has two dominant options, Aand B, and a recessive option called O. For example, an individual with AO or AA would presentthe A protein, and an individual with AB will present both the A and B proteins on their blood;an individual with OO has no proteins from this gene. The Rh gene has two options; the dominantoption is called positive (or + for short), while the recessive option is called negative or null (or –for short). For example, an individual with ++ or +– would present the Rh protein on their blood,while an individual with – – would not present the Rh…Explain the ABO blood system as an example of multiple alleles and codominance; be sure to discuss blood phenotype as an expression of surface proteins, “markers” on the red blood cells
- 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 donorIf I have Type AB blood and my husband has Type B blood, which of the following blood type(s) could our genetic children have? Туре А Туре В Туре АB O All of the above None of the aboveA graduating nursing student wanted to know the different blood groups and how they can be inherited. She understood that multiple allele is the inheritance pattern for ABO blood type while complete dominance for Rh factor (Rh + is dominant over Rh -). Now she wanted to know what the probable blood types from the 3 systems on her future children are. Consider the nursing student has AB, Rh negative and her current husband has O, heterozygous Rh positive. 1. What is the probability of having a child with a blood type of type O? A. 25% B. 100% C. 75% D. 50% E. 0% 2. What is the probability of having a child with a blood type of type A Rh positive? A. 1/4 B. 3/8 C. 1/2 D. 3/4 E. 1/8 3. What is the probability of having a child with a blood type of type B Rh negative? A. 3/4 B. 1/8 C. 1/4 D. 1/2 E. 3/8 4. heterozygous Rh positive. What are the possible blood types of her children? A. A Rh+, A Rh-, B Rh+, B Rh-, O Rh+, O Rh- B. A Rh+, B…