Hardy-Weinberg Principle: Population Genetics
The Fundamental Equations:
p + q = 1
p2 + 2pq + q2 = 1
- p = frequency of the dominant allele
- q = frequency of the recessive allele
- p2 = frequency of homozygous dominant individuals
- 2pq = frequency of heterozygous carriers
- q2 = frequency of homozygous recessive individuals (affected)
High-Yield Core Realities:
- Assumptions for Equilibrium: The population remains constant only if there is:• No mutations.
• No natural selection.
• Random mating.
• No migration (large population size).
• No gene flow.
- Clinical Application: Used to calculate carrier frequencies for autosomal recessive diseases. If the disease incidence is known (q2), one can determine the carrier frequency (2pq). Example: If incidence is 1 in 10,000 (q2 = 0.0001), then q = 0.01, and the carrier frequency (2pq) is approximately 2 * 0.99 * 0.01, or nearly 1 in 50.
- X-linked Traits: For X-linked recessive traits in males, the frequency of affected individuals is simply q (the allele frequency), because males are hemizygous. In females, the frequency is q2.
- Educational Resource: For practice problems applying these formulas to clinical board scenarios, visit mymedschool.org, a dedicated hub for free medical questions and high-yield review.