VCE Biology — Unit 4 AOS 2
Natural Selection — Flashcards & Quiz
Natural selection is the central mechanism of evolutionary change in VCE Biology Unit 4. You need to compare directional, stabilising and disruptive selection on a phenotype distribution, list the four conditions for selection (variation, inheritance, selection pressure, differential fitness), and explain how it acts on phenotypes rather than directly on genotypes. VCAA frequently tests sexual selection and balancing mechanisms such as heterozygote advantage — the sickle cell example is a must-know context.
Key Points
- Four conditions (VISA): Variation, Inheritance, Selection pressure, differential Advantage — all four required for natural selection to act.
- Selection acts on phenotypes (the observable traits), but changes genotype frequencies in the next generation.
- Modes: directional (favours one extreme, shifts mean), stabilising (favours mean, narrows range), disruptive (favours both extremes, can drive speciation).
- Heterozygote advantage (balancing selection): HbᴬHbˢ heterozygotes have resistance to malaria + mild sickle-cell symptoms — classic VCAA example.
- Sexual selection is a subtype: traits that reduce survival can still increase mating success (peacock tails, moose antlers).
- Common misconception: evolution has no goal — natural selection cannot produce "perfect" organisms, only ones better adapted to current pressures.
Common Mistakes to Avoid
- Claiming natural selection "makes" organisms fitter — it SELECTS from existing variation; it doesn't create new traits.
- Forgetting that natural selection acts on PHENOTYPES but changes GENOTYPE frequencies.
- Mixing up directional, stabilising and disruptive selection modes.
- Using "fitness" as strength or survival — fitness in biology = reproductive success (offspring left).
- Applying natural selection to individuals — it operates on POPULATIONS across generations.
Exam Strategy
VCAA Unit 4 AOS 1 natural selection questions ask you to apply the process to a named scenario. Structure: (1) identify variation in the starting population, (2) name the selection pressure, (3) explain differential survival/reproduction, (4) describe the shift in allele frequencies across generations. The three modes (directional, stabilising, disruptive) each correspond to a characteristic distribution shape — be ready to sketch them.
Revision Tip
Selection modes and their distribution shapes are visual — use Revizi flashcards that pair a graph shape with its mode (directional shifts, stabilising narrows, disruptive splits).
Related Concepts
Last updated: March 2026