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Question
multiple choice question
which reason best explains why the abo blood group is an example of multiple alleles and codominance?
- alleles ia and i are codominant, and allele ib is recessive to ia.
- alleles ia and ib are codominant and allele i is recessive to ia and ib.
- alleles ib and i are codominant, and allele ia is recessive to i and ib.
- alleles ia and ib are codominant and allele i is recessive to ib.
To determine the correct answer, we recall the principles of multiple alleles and codominance in the ABO blood group system. In the ABO system, there are three alleles: \( I^A \), \( I^B \), and \( i \). Codominance occurs when both \( I^A \) and \( I^B \) are present (resulting in blood type AB), meaning they are codominant. The allele \( i \) is recessive to both \( I^A \) and \( I^B \) (since \( I^A i \) gives type A and \( I^B i \) gives type B, while \( ii \) gives type O).
- The first option is incorrect because \( I^A \) and \( i \) are not codominant ( \( i \) is recessive to \( I^A \) ), and \( I^B \) is not recessive to \( I^A \).
- The second option correctly states that \( I^A \) and \( I^B \) are codominant and \( i \) is recessive to both.
- The third option is incorrect as \( I^B \) and \( i \) are not codominant, and \( I^A \) is not recessive to \( i \) or \( I^B \).
- The fourth option is incorrect because \( i \) is recessive to both \( I^A \) and \( I^B \), not just \( I^B \).
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B. Alleles \( I^A \) and \( I^B \) are codominant and allele \( i \) is recessive to \( I^A \) and \( I^B \).