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Resistant organisms and antibiotic resistance

Natural selection and genetic modification · Darwin, natural selection and antibiotic resistance · note 3 of 3

Resistant organisms and antibiotic resistanceSpec 4.3

In short

Antibiotic resistance is an example of natural selection seen within a human lifetime. A mutation gives one bacterium an allele for resistance. The antibiotic kills the non-resistant bacteria, but the resistant one survives, reproduces and passes on the allele. Over time most of the population is resistant, so the antibiotic no longer works against the infection.

The emergence of resistant organisms is an example of natural selection that can be seen happening within a human lifetime. Bacteria reproduce very quickly, so changes in a population happen fast.

  1. In a population of bacteria, a mutation produces an allele that makes one bacterium resistant to an antibiotic. This is variation.
  2. The antibiotic is used. It kills the non-resistant bacteria, but the resistant bacterium survives. The antibiotic is the selection pressure.
  3. The resistant bacterium reproduces with less competition, and passes the resistance allele on to its offspring.
  4. Over time the population is mostly resistant bacteria, so the antibiotic no longer works against the infection.

This supports Darwin's theory because all the steps of natural selection can be observed: variation, a selection pressure, survival and reproduction of the better adapted, and inheritance of the useful allele.

Percentage of resistant bacteria (practice data)

In a lab, 300 bacteria were sampled before treatment and 12 were resistant to an antibiotic. After several rounds of treatment, 300 bacteria were sampled again and 192 were resistant. Calculate the percentage resistant at each time, and the change.

  1. Before: 12 ÷ 300 × 100 = 4%
  2. After: 192 ÷ 300 × 100 = 64%
  3. Change: 64 − 4 = 60 percentage points

Answer: 4% before, 64% after, an increase of 60 percentage points.

Maths skill:

You may be asked to plot such data as a bar chart or line graph. Choose scales that use at least half the grid, label both axes with units, and plot the independent variable (time or treatment) on the x-axis.

Common mistake:

Antibiotics do not cause the mutation, and bacteria do not 'get used to' antibiotics. The resistant bacteria were there by chance and are selected by the antibiotic.

Quick check

  1. What causes new alleles to appear in a population?

    Show answer

    Mutation.

  2. Give the four main steps of natural selection in order.

    Show answer

    Variation, competition so some survive and reproduce, alleles passed on, proportion with the useful allele increases.

  3. In antibiotic resistance, what is the selection pressure?

    Show answer

    The antibiotic.

  4. Why do populations of bacteria change quickly?

    Show answer

    Bacteria reproduce very rapidly, so the resistance allele spreads in a short time.

Written and checked against the Edexcel GCSE Biology (1BI0) specification · Updated October 2026

Frequently asked questions

What are the 4 stages of natural selection?

The four stages of natural selection are variation, competition, survival and inheritance. Individuals show variation in their alleles, caused by mutation. More offspring are born than can survive, so they compete. Those best suited to their environment survive and reproduce, then pass on their advantageous alleles, which become more common over generations.

How does natural selection lead to evolution?

Natural selection leads to evolution because individuals with advantageous characteristics are more likely to survive, reproduce and pass on their alleles. In each generation, the proportion of the population with those alleles increases. Over many generations this changes the inherited characteristics of the population, and that change is evolution.

How do bacteria become resistant to antibiotics?

Bacteria become resistant to antibiotics through mutation and natural selection. A random mutation gives one bacterium an allele for resistance. The antibiotic kills the non-resistant bacteria, but the resistant one survives, reproduces with less competition and passes on the allele. Antibiotics do not cause the mutation; they select the resistant bacteria.

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