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Codominance

Key definition

  • Codominance is a situation in which both alleles in heterozygous organisms contribute to the phenotype.

Overview

  • With the previous examples discussed, the involved alleles are either dominant or recessive.
    • Remember that the recessive allele is not expressed in the phenotype of individuals with the heterozygous genotype.
  • Sometimes, both alleles are expressed and neither is dominant. This means the phenotype would be a mixture of the effects of each allele. This is called codominance.
    • The alleles are called codominant alleles.

Example (the four o’clock plant)

  • The four o’clock plant can have red flowers or white flowers. Flower color is determined by one gene.
  • If you cross homozygous red-flowered plants with homozygous white-flowered plants, the offspring are all pink.
    • The two parents produce heterozygous offspring (the generation) in which both alleles are expressed to give pink, an intermediate color.
  • A Punnett square can be used to show these characteristics.
gametes
  • There are three possible combinations for this plant:
    • 25% homozygous
    • 50% heterozygous
    • 25% homozygous
  • The phenotypes are:
    • 25% red
    • 50% pink
    • 25% white
  • These ratios can be given as .
  • Notice also that each allele is represented as a CAPITAL LETTER.
    • a red flower would be represented as
    • a white flower would be represented as .
    • This shows that neither allele is recessive and that they both exert an equal effect on the phenotype.

Multiple alleles

  • With the previous examples discussed, it only shows two alternative alleles for a gene. There are examples where a gene may have three or more alleles.

The human ABO blood group system

GenotypeBlood group
A
A
B
B
AB
O
  • The human ABO blood group system is determined by one gene, , with three different alleles:
  • The alleles and are codominant and code for slightly different molecules on the surface of red blood cells.
  • The allele is recessive to both and and does not code for one of these molecules.
  • The four different blood groups are:
    • A
    • B
    • AB
    • O
gametes
  • This is an example of two parents that have blood groups AB and O:
    • The children will have blood groups A or B. None of them will have the same blood group as their parents.
gametes
  • This is an example of two heterozygous parents that have blood groups A and B.
    • Their children can have any of the four blood groups: A, B, AB, and O.