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Q.A Snapdragon plant bearing pink colour flowers is crossed with a Snapdragon plant bearing white colour flowers. The expected phenotypic percentage of the offspring is : (A) 50% Red : 50% White (B) 25% Red : 50% Pink : 25% White (C) 50% Pink : 50% White (D) 25% Pink : 50% Red : 25% White

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Snapdragon flower color exhibits incomplete dominance, meaning a cross between pink (heterozygous) and white (homozygous recessive) flowers will produce offspring with a 50% Pink : 50% White phenotypic ratio.

In Snapdragon plants, flower color is a classic example of incomplete dominance. This means that neither allele is completely dominant over the other. Instead, the heterozygous genotype results in an intermediate phenotype.

For instance, if we consider the alleles for red (R) and white (W) flower color:

  • A plant with two red alleles (RR) will have red flowers.
  • A plant with two white alleles (WW) will have white flowers.
  • However, a plant with one red allele and one white allele (RW) will have pink flowers, which is an intermediate blend of red and white.

This is different from complete dominance, where the heterozygous individual would express the dominant phenotype (e.g., if red were dominant, RW would be red). Understanding this specific mode of inheritance is crucial for predicting the offspring's characteristics.

Here's how we can determine the expected phenotypic percentage:

  1. Identify the genotypes of the parental plants.

    • The first parent plant bears pink flowers. Since pink is the intermediate phenotype, its genotype must be heterozygous: RW.
    • The second parent plant bears white flowers. Since white is a homozygous phenotype, its genotype must be: WW.
  2. Set up a Punnett square for the cross.

    We are crossing a pink-flowered plant (RW) with a white-flowered plant (WW). We list the possible gametes from each parent along the top and side of the square.

    GametesRW
    WRWWW
    WRWWW
  3. Determine the genotypes and phenotypes of the offspring.

    From the Punnett square, the possible genotypes of the offspring are:

    • RW (from the first row, first column, and second row, first column)
    • WW (from the first row, second column, and second row, second column)

    The genotypic ratio is 2 RW : 2 WW, which simplifies to 1 RW : 1 WW. …

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