8876 / 2027

Lesson 4 of 5 / Variation, selection and species

Explain why harmful alleles can persist

Why does selection not remove every recessive harmful allele?

In this lesson: Explain preservation of genetic variation, including masking of recessive alleles and context-dependent heterozygote advantage.

About 5 min

The key ideaA harmful recessive allele can be carried without its recessive phenotype in heterozygotes. Different conditions and heterozygote advantages can also maintain more than one allele.

Explore the idea

Remove aa: does a disappear?

40 AA individuals40 Aa individuals20 aa individualsa is carried in Aa and aaRecessive does not mean absent

Inspect genotypes before judging which allele copies selection can remove through their expressed effects.

Explanation

Selection acts through expressed characteristics that affect reproductive success. A recessive allele whose harmful effect is expressed in aa can still occur in Aa individuals that do not show that recessive effect. Such heterozygotes can survive, reproduce and transmit a, so selecting against aa need not eliminate a.

Masking is not the claim that the allele has physically disappeared. If two carriers reproduce, some offspring can inherit two copies. When a harmful recessive allele is rare, many of its remaining copies may be in heterozygotes rather than exposed in recessive homozygotes.

Variation can also be maintained when heterozygotes have an advantage over either homozygote in a particular environment. The sickle-cell example links haemoglobin variation to malaria: HbA/HbS individuals have protection against severe malaria relative to HbA/HbA in relevant settings, while HbS/HbS carries the serious cost of sickle-cell disease. This is not complete immunity or a claim that the allele is beneficial in all circumstances.

Different environments may favour different variants, and changing conditions may alter the advantage over time. Continued mutation can also introduce alleles. There is therefore no universal rule that selection must leave a population with only one allele at every locus.

Step by step
  1. 1

    Find where the allele is carried

    A recessive allele can occur in both Aa and aa.

  2. 2

    Find where the harmful effect is expressed

    Selection against the recessive phenotype does not directly remove every Aa carrier.

  3. 3

    Consider the environment

    An advantage in one genotype or setting can help preserve variation.

Worked example

The hidden copies remain

A simplified population contains 40 AA, 40 Aa and 20 aa. Suppose the aa individuals leave no offspring. Have all a copies been removed from the breeding population?

One way to explain it

No. The 40 Aa individuals still carry 40 copies of a. They can pass those copies to offspring even though they do not show the recessive harmful phenotype in this model.

Why this answer works
  • Remove the selected-against genotype, not every occurrence of its allele.
  • Count the allele copies remaining in carriers.
Is this true? "Recessive means the allele is weak and will disappear in the next generation."

Recessive describes a phenotype relationship in heterozygotes. It does not predict inevitable disappearance or low frequency.

Try a question

Why can selection against aa fail to remove a completely?
You can return to this lesson any time.