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4.6.3.4Resistant bacteria

AQA GCSE Combined Science (8464), Higher tier · Biology › Inheritance, variation and evolution › The development of understanding of genetics and evolution

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Revision notes

How bacteria evolve resistance to antibiotics by natural selection, why resistant strains such as MRSA spread, and how to slow down the development of resistance. Very common: 2 to 6 mark 'explain' questions and data on resistant infections.

Grade by grade

What you need to be able to do, from the first marks up to the top grade.

  1. 3
    Name an antibiotic-resistant bacteriumMRSA is resistant to antibiotics.
  2. 4
    State ways to reduce antibiotic resistanceDon't prescribe antibiotics for viral or non-serious infections, complete the course, and restrict their use in farming.
  3. 5
    Explain why bacteria evolve rapidlyThey reproduce at a fast rate, so there are many generations in a short time.
  4. 6
    Explain how resistant strains developA mutation makes some bacteria resistant; they survive the antibiotic and reproduce, so the resistant population rises.
  5. 7
    Explain why resistant strains spreadPeople are not immune to the new strain and there is no effective treatment.
  6. 7
    Explain why new antibiotics won't solve itDeveloping new antibiotics is costly and slow, so it is unlikely to keep up with new resistant strains.

Notes

How resistance develops

  • Bacteria can evolve rapidly because they reproduce at a fast rate.
  • Mutations of bacterial pathogens produce new strains. Some strains might be resistant to antibiotics, and so are not killed.
  • When an antibiotic is used, the non-resistant bacteria are killed. The resistant bacteria survive and reproduce, so the population of the resistant strain rises. This is natural selection.
  • The resistant strain then spreads because people are not immune to it and there is no effective treatment.
  • MRSA is a bacterium that is resistant to antibiotics.
  • The antibiotic does not cause the mutation. It only kills the bacteria that are not resistant.

Slowing the development of resistant strains

  • Doctors should not prescribe antibiotics inappropriately, such as for non-serious or viral infections. Antibiotics do not kill viruses.
  • Patients should complete their course of antibiotics, so all the bacteria are killed and none survive to mutate and form resistant strains.
  • The agricultural use of antibiotics should be restricted.

New antibiotics

  • The development of new antibiotics is costly and slow.
  • It is unlikely to keep up with the emergence of new resistant strains.

Cheatsheet

  • Bacteria evolve rapidly because they reproduce at a fast rate
  • Mutation → new strain → some resistant → survive the antibiotic → reproduce → resistant population rises
  • Resistant strains spread: people are not immune and there is no effective treatment
  • MRSA = a bacterium resistant to antibiotics
  • Reduce resistance: no antibiotics for viral or non-serious infections; complete the course; restrict agricultural use
  • New antibiotics are costly and slow to develop, so they are unlikely to keep up

How to answer each type of question

Explain a way of reducing antibiotic resistance

2 marks5
  1. Say what should be done (complete the course, don't use antibiotics for viral infections, restrict use in farming).
  2. Explain why: all bacteria killed, or fewer chances for resistant strains to be selected.

Example. A doctor tells a patient to finish their course of antibiotics, even if they feel better.
Explain why. [2 marks]

Show the model answer
So that all the bacteria are killed (1), and none survive to mutate and form resistant strains (1).

Explain why antibiotics should not be used for viral infections

2 marks5
  1. Antibiotics do not kill viruses.
  2. Unnecessary use kills non-resistant bacteria and leaves resistant bacteria to survive and reproduce.

Example. Explain why doctors should not prescribe antibiotics to treat a cold. [2 marks]

Show the model answer
Colds are caused by viruses, and antibiotics do not kill viruses (1). Using antibiotics when they are not needed increases the chance of antibiotic-resistant strains of bacteria developing (1).

Explain how a resistant strain develops

3 to 4 marks6
  1. A mutation makes a bacterium resistant.
  2. The antibiotic kills the non-resistant bacteria; the resistant ones survive.
  3. The resistant bacteria reproduce.
  4. The population of the resistant strain rises.

Example. Explain how a population of bacteria can become resistant to an antibiotic. [4 marks]

Show the model answer
A mutation causes some bacteria to be resistant to the antibiotic (1). When the antibiotic is used, the non-resistant bacteria are killed (1). The resistant bacteria survive and reproduce, passing on the resistance (1). So the population of the resistant strain increases (1).

Explain why resistance is hard to overcome

2 to 3 marks7
  1. Resistant strains spread because people are not immune and there is no effective treatment.
  2. New antibiotics are costly and slow to develop.
  3. Resistant strains appear quickly because bacteria reproduce fast, so new antibiotics are unlikely to keep up.

Example. Scientists are trying to develop new antibiotics to treat MRSA.
Explain why developing new antibiotics is unlikely to solve the problem of antibiotic resistance. [2 marks]

Show the model answer
Developing new antibiotics is costly and slow (1). New resistant strains keep appearing because bacteria reproduce quickly and mutate, so new antibiotics are unlikely to keep up (1).

Shortcuts and memory tricks

  • Resistance in four steps: mutate, survive, reproduce, spread.
  • Three ways to slow it: don't use antibiotics for viruses, finish the course, restrict use on farms.
  • Antibiotics kill bacteria, not viruses.

Where marks are lost

  • Saying bacteria 'become immune'. Bacteria become resistant; immunity is about your white blood cells.
  • Saying the antibiotic causes the mutation. The mutation happens by chance; the antibiotic kills the non-resistant bacteria.
  • Saying people become resistant to antibiotics. It is the bacteria that are resistant.
  • Saying antibiotics can treat viral infections such as colds and flu.

Exam technique

  • Use 'resistant', not 'immune', for bacteria.
  • When explaining how resistance develops, always include both 'survive' and 'reproduce'.
  • If a graph shows resistant infections rising, link it to the use of antibiotics and natural selection.

Quick recall

Cover the answers and test yourself. The app has these as flashcards that come back just before you'd forget them.

The statements describe how a strain of bacteria that is resistant to an antibiotic can develop and spread. They are in the wrong order.
A The resistant bacteria survive and reproduce.
B A mutation produces a bacterium that is resistant to the antibiotic.
C The antibiotic kills the bacteria that are not resistant.
D The population of the resistant strain rises.
E The resistant strain spreads, because people are not immune to it and there is no effective treatment.
Write the letters in the correct order.
B, C, A, D, E

Sample questions

Written for this site in the style of AQA exam questions. They are not taken from real past papers.

Question 1Easy4 marks
Some strains of bacteria are resistant to antibiotics.
(a) Which of these is a strain of bacteria that is resistant to many antibiotics?
Tick (✓) one box.[1]
  • HIV
  • MRSA
  • Plasmodium
  • TMV
(b) Which two actions reduce the rate at which antibiotic-resistant strains develop?
Tick (✓) two boxes.[2]
  • Doctors prescribing antibiotics for viral infections
  • Patients completing their course of antibiotics
  • Farmers routinely adding antibiotics to animal feed
  • Restricting the use of antibiotics in agriculture
  • Patients sharing leftover antibiotics with family members
(c) The development of new antibiotics is unlikely to keep up with the emergence of new resistant strains.
Give one reason why.[1]
Show the answer and mark scheme
(a) Answer: MRSA
(b) Answer: Patients completing their course of antibiotics; Restricting the use of antibiotics in agriculture
(c)
  • developing new antibiotics is costly / expensive
  • developing new antibiotics is slow / takes many years
  • bacteria reproduce / evolve quickly
Question 2Medium8 marks
A patient in hospital had an infection caused by a strain of bacteria. The patient was treated with an antibiotic. Most of the bacteria were killed, but a few survived. The bacteria that survived were resistant to the antibiotic.
(a) Explain how a population of bacteria can become resistant to an antibiotic.[4]
(b) The resistant strain spread to other patients in the hospital.
Explain why a resistant strain spreads easily.[2]
(c) Explain why patients should complete their course of antibiotics.[2]
Show the answer and mark scheme
(a)
  • (random) mutation (of bacterial DNA / genes)
  • produces a new strain / some bacteria that are resistant
  • when the antibiotic is used, non-resistant bacteria are killed but resistant bacteria survive
  • resistant bacteria reproduce (rapidly)
  • (so) the population of the resistant strain rises / the resistance gene is passed on
(b)
  • people are not immune to the (new) strain
  • there is no effective treatment (so infected people stay ill / infectious for longer)
(c)
  • so that all the bacteria are killed
  • (so) none survive to mutate and form resistant strains / fewer partly resistant bacteria survive to reproduce
Question 3Hard8 marks
A single bacterium in a wound has a mutation that makes it resistant to an antibiotic. The patient is being treated with this antibiotic, which kills all the non-resistant bacteria.
The resistant bacterium divides once every 25 minutes.
(a) Calculate the number of resistant bacteria after 5 hours if none of them die.[3]
(b) In the patient, the number of bacteria after 5 hours would probably be lower than your answer.
Suggest one reason why.[1]
(c) Explain why bacteria can evolve resistance much more rapidly than animals can evolve new characteristics.[2]
(d) The patient was then treated with a different antibiotic that killed the resistant bacteria. Doctors use this antibiotic only when other antibiotics have failed.
Explain why.[2]
Show the answer and mark scheme
(a) Answer: 4096
  • (5 × 60) ÷ 25 = 12 (divisions)
  • 212
  • 4096
(b)
  • some bacteria are destroyed by white blood cells / the immune system
  • nutrients / oxygen / space may become limited
  • toxic waste products build up
  • not all bacteria divide every 25 minutes
(c)
  • bacteria reproduce at a fast rate / have a short generation time
  • (so) a resistant mutation can spread through the population / many generations of natural selection occur in a short time
(d)
  • to reduce the chance of bacteria becoming resistant to this antibiotic
  • so that it stays effective for treating infections by resistant strains (e.g. MRSA)

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