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Q.Assertion (A) : ABO blood grouping in humans is an example of multiple allelism. Reason (R) : More than two genes in a population govern the same character in ABO blood grouping in humans.

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Multiple allelism means more than two alleles of a single gene exist in a population. ABO blood grouping is controlled by three alleles (I^A, I^B, i) of one gene, so Assertion is true. But the Reason says "more than two genes" — that is wrong; it's one gene with multiple alleles. Hence Assertion is true but Reason is false.


The core concept: What multiple allelism really means

When you hear "multiple alleles," the trap is to think it means "many genes." It does not. Multiple allelism refers to a single gene locus that has more than two possible allele variants present in the population. Any one diploid individual still carries only two alleles (one from each parent), but across the population, three or more different versions of that gene exist.

ABO blood grouping is the classic textbook example. The gene involved is the ABO gene on chromosome 9. It has three common alleles: I^A, I^B, and i. The I^A and I^B alleles are co-dominant (both expressed when together), and both are dominant over i. This gives the six possible genotypes and four blood group phenotypes you know.

Now look at the Reason statement carefully. It says: "More than two genes in a population govern the same character." That is a fundamental error. It is not "more than two genes" — it is more than two alleles of the same gene. The Reason misstates the definition of multiple allelism.


Step-by-step reasoning

  1. Check the Assertion (A).

    ABO blood grouping in humans is indeed an example of multiple allelism because three alleles (I^A, I^B, i) of a single gene exist in the human population. So Assertion is true.

  2. Check the Reason (R). …

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