Study Guide

Variation

BiologyΒ· Unit 18: Selection and EvolutionΒ· 25 min read

1. Types of Variationβ˜…β˜…β˜†β˜†β˜†β± 7 min

πŸ“˜ Definition

Variation

Variation refers to measurable differences in phenotype or genotype between individual organisms within the same species. It is grouped into two broad categories based on how traits are distributed.

Example:

Differences in height among adult humans is a common example of variation

Characteristic

Continuous Variation

Discontinuous Variation

Genetic control

Polygenic (many genes)

One or few genes

Environmental effect

Strong influence

Little to no influence

Trait distribution

Continuous range, no distinct groups

Discrete, distinct groups

Example

Height, skin colour, crop yield

ABO blood group, tongue rolling, pea seed shape

πŸ“ Worked Example

Classify the following human traits as continuous or discontinuous variation: (a) eye colour, (b) body mass, (c) sickle cell anemia status, (d) finger length

  1. 1

    First recall the core difference: continuous variation has a full range of intermediate phenotypes, while discontinuous variation falls into distinct groups.

  2. 2

    (a) Eye colour ranges from very light blue to very dark brown with many intermediate shades, so this is continuous variation.

  3. 3

    (b) Body mass shows a full range from very low to very high mass with no distinct cut-offs between groups, so this is continuous variation.

  4. 4

    (c) Sickle cell anemia status is either unaffected, carrier, or affected β€” three distinct groups with no intermediates, so this is discontinuous variation.

  5. 5

    (d) Finger length varies gradually between individuals with many intermediate lengths, so this is continuous variation.

Exam tip:

Always link variation type to number of genes when answering explanation questions; CIE examiners expect this connection.

2. Causes of Variationβ˜…β˜…β˜…β˜†β˜†β± 10 min

All variation comes from a combination of genetic and environmental factors. Only genetic variation is heritable (can be passed from parent to offspring) and contributes to long-term evolutionary change.

  • Genetic causes: Random gene/chromosome mutations, crossing over in prophase I of meiosis, independent assortment of homologous chromosomes in metaphase I, random fertilization of gametes

  • Environmental causes: Differences in diet, climate, light exposure, lifestyle, and injury that modify phenotype

πŸ“ Worked Example

Identical twins share 100% of their DNA, but often have slightly different heights. Explain this observation.

  1. 1

    Since identical twins have identical genotypes, any phenotypic difference must come from environmental factors, not genetic variation.

  2. 2

    Height is a continuous, polygenic trait that is strongly influenced by environmental factors during development.

  3. 3

    Differences in factors like childhood nutrition, access to healthcare, exposure to illness, or even uterine conditions during development can lead to measurable differences in final adult height, even with identical genetics.

3. Variation and Evolutionβ˜…β˜…β˜…β˜†β˜†β± 8 min

Variation is an absolute requirement for natural selection and evolution. If all individuals in a population are genetically identical, no trait can be selected for or against, so the population cannot adapt to environmental change.

Advantageous variants (traits that improve survival and reproduction) will become more common over generations, while harmful variants will decrease in frequency. Over long periods, this process leads to adaptation and eventually speciation.

πŸ“ Worked Example

How does variation allow a population of bacteria to evolve resistance to a new antibiotic?

  1. 1

    Random genetic mutations create variation in the bacterial population: a small number of individuals carry a mutation that gives them antibiotic resistance.

  2. 2

    When the population is exposed to the antibiotic, all non-resistant individuals die, while resistant individuals survive due to their advantageous trait.

  3. 3

    Surviving resistant bacteria reproduce asexually, passing the resistance allele to all their offspring. Over multiple generations, the entire population becomes resistant, as all non-resistant individuals are eliminated.

4. Common Pitfalls

Wrong move:

Claiming all continuous variation is purely genetic

Why:

Nearly all continuous polygenic traits are strongly influenced by environmental factors

Correct move:

Always state that continuous variation is caused by a combination of genetic and environmental factors

Wrong move:

Claiming all variation is heritable

Why:

Only genetic variation can be passed to offspring; purely environmental variation is not heritable

Correct move:

Distinguish between heritable genetic variation and non-heritable environmental variation when answering questions about evolution

Wrong move:

Defining variation as differences between different species

Why:

In the context of evolution, variation refers to differences between individuals of the same species

Correct move:

Remember that intra-species variation is the variation that drives natural selection

Wrong move:

Claiming discontinuous variation is never affected by the environment

Why:

While discontinuous variation is primarily genetic, many traits can have their expression modified by environment

Correct move:

State that discontinuous variation is largely genetic, but acknowledge environmental modifiers may affect phenotype severity

5. Quick Reference Cheatsheet

Feature

Continuous Variation

Discontinuous Variation

Number of genes

Many (polygenic)

1-2 genes

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When this came up on past exams

AI-estimated based on syllabus patterns β€” cross-check with official past papers for accuracy. Use only as revision-focus signals.

  • 2022 Β· 2

    Classify types of variation

  • 2023 Β· 4

    Causes of variation essay

  • 2021 Β· 1

    MCQ variation characteristics

Going deeper

What's Next

Variation is the starting point for all evolutionary change, so your understanding here forms the base for all subsequent topics in selection and evolution. Next, you will explore how natural selection acts on variation to change allele frequencies in populations over time. This topic also connects directly to speciation, where divergent selection on variation in separated populations leads to the formation of new species. Mastering variation is critical for essay questions in Paper 4, which often require you to link variation to natural selection, adaptation, and evolution. Getting this foundation right will make more complex topics much easier to learn.