Incomplete dominance and codominance

Organisms (Continuity and change) · Inheritance · note 4 of 7

Incomplete dominance and codominanceSpec D3.2.10

In short

In incomplete dominance, heterozygotes have an intermediate phenotype, such as pink four o'clock flowers from red and white parents. In codominance, heterozygotes have a dual phenotype, with both alleles fully expressed, such as blood group AB from Iᴬ and Iᴮ. Both differ from complete dominance, where heterozygotes look like the homozygous dominant.

Patterns of inheritance at the phenotypic level
PatternHeterozygote phenotypeExample
Complete dominanceSame as homozygous dominantPea plants: Tt is tall, like TT
Incomplete dominanceIntermediate between the two homozygotesFour o'clock flower (Mirabilis jalapa): red × white gives pink
CodominanceDual phenotype: both alleles expressedBlood group AB (IᴬIᴮ): both A and B antigens present

Incomplete dominance in the four o'clock flower

A pure-breeding red Mirabilis jalapa (CᴿCᴿ) is crossed with a pure-breeding white plant (CᵂCᵂ). The F1 are self-pollinated. Deduce the F1 and F2 phenotypes and ratio.

  1. P gametes: Cᴿ and Cᵂ, so all F1 are CᴿCᵂ: pink.
  2. F1 × F1: each produces Cᴿ and Cᵂ gametes in equal numbers.
  3. Punnett grid: CᴿCᴿ, CᴿCᵂ, CᵂCᴿ, CᵂCᵂ.

Answer: F1 all pink. F2 1 red : 2 pink : 1 white; the genotype ratio and phenotype ratio are the same.

In the pink heterozygote, the single Cᴿ allele produces only enough red pigment to make the petals pink. In blood group AB, each allele makes its own enzyme, so both antigens appear side by side.

Exam tip:

A 1:2:1 phenotype ratio in an F2 is a sign of incomplete dominance or codominance, because the heterozygotes can be told apart. Either the common or the scientific name of the organism is acceptable.

Written and checked against the IB Biology SL specification · Updated October 2026

Frequently asked questions

What is the difference between genotype and phenotype?

Genotype is the combination of alleles an organism inherits, for example Aa. Phenotype is the observable traits of the organism, which result from its genotype and environmental factors. Some traits depend on genotype only, such as ABO blood group; others, such as height, depend on genes interacting with the environment.

What is the difference between codominance and incomplete dominance?

In codominance the heterozygote has a dual phenotype, with both alleles fully expressed, as in blood group AB with A and B antigens. In incomplete dominance the heterozygote has an intermediate phenotype, as in pink four o'clock flowers from red and white parents. Both give a 1:2:1 phenotype ratio in the F2.

Why are sex-linked disorders more common in males?

Sex-linked disorders such as haemophilia are caused by recessive alleles on the X chromosome. Males have only one X chromosome, so a single recessive allele is expressed. Females have two X chromosomes and are affected only if both carry the recessive allele, so they are usually unaffected carriers.

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