Lesson 3.4.2

3.4.2 Differential gene expression and the lac operon Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 3

20 questions

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Lesson 3.4.2, Differential gene expression and the lac operon: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 3: Voice of the Genome, written with Revision Ninja.

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The 20 questions

  1. What is differential gene expression?

    • The selective switching on and off of genes so that cells develop different structures and functions
    • Copying the DNA identically before each cell division
    • Changing the DNA sequence of genes during development
    • Using only one type of gene in every cell of an organism
  2. What is the role of messenger RNA in producing a protein?

    • It carries the copy of the gene's code
    • It carries amino acids to the cell membrane
    • It forms the membrane of the ribosome
    • It breaks down proteins in lysosomes
  3. In the lac operon of E. coli, what does the lac repressor do when lactose is absent?

    • It binds to RNA polymerase and carries it to the gene
    • It binds to the operator and blocks transcription of the lac genes
    • It breaks down lactose in the cytoplasm
    • It binds to the ribosome and stops translation
  4. What happens to the lac repressor when lactose is present in the cell?

    • The repressor is converted into lactose and removed
    • The repressor moves into the nucleus and binds the ribosome
    • Allolactose binds the repressor, which releases the operator so the genes are transcribed
    • The repressor is destroyed and the operon is permanently switched off
  5. Which enzyme is encoded by the lac operon and used to break down lactose?

    • Catalase
    • Amylase
    • Pepsin
    • Beta-galactosidase
  6. Why is the lac operon described as an inducible system?

    • Its genes are only active in plant cells
    • Its genes are switched on only when the cell is dividing
    • Its genes are switched off in all conditions
    • Its genes are switched on in the presence of an inducer such as lactose
  7. In the lac operon, what is the function of the operator?

    • It is the RNA that carries amino acids to the ribosome
    • It is the DNA sequence the repressor binds to, controlling access of RNA polymerase
    • It is the enzyme that breaks down lactose into glucose
    • It is the protein that forms the cell membrane
  8. How does differential gene expression explain why a muscle cell and a neuron are different?

    • They have the same DNA, but each expresses a different set of genes
    • They have different numbers of chromosomes
    • They have different DNA sequences from the zygote
    • They lose different genes during mitosis
  9. What is transcription?

    • Joining amino acids to form a polypeptide on a ribosome
    • Copying DNA before cell division
    • Making an mRNA copy of a gene from DNA
    • Breaking down proteins into amino acids
  10. What is translation?

    • Using the sequence of mRNA codons to join amino acids into a polypeptide on a ribosome
    • Breaking down mRNA into nucleotides
    • Joining two DNA strands together
    • Using DNA to make an RNA primer
  11. What is the advantage of the lac operon for a bacterium?

    • It switches on the enzymes for lactose use only when lactose is available, saving energy
    • It makes the bacterium resistant to all antibiotics
    • It allows the bacterium to make chloroplasts
    • It prevents any gene expression from taking place
  12. A mutation prevents the lac repressor from binding to the operator. What is the likely result?

    • The enzymes are made but the cell cannot take in lactose
    • The lac genes are transcribed continuously, even without lactose
    • The lac genes are never transcribed, even with lactose
    • The mRNA is destroyed as soon as it is made
  13. Which statement describes how a cell becomes specialised?

    • Specific genes are activated
    • The cell gains extra chromosomes from neighbouring cells
    • Cell division stops and the cell fills with water
    • Genes are deleted from the DNA as the cell matures
  14. Which molecule is an inducer of the lac operon?

    • Beta-galactosidase
    • Glucose
    • Lac repressor
    • Allolactose
  15. What would be expected if a researcher added a lactose analogue that cannot bind the repressor?

    • The repressor would be produced in greater quantity
    • The operon would be switched on immediately and strongly
    • The operon would stay switched off
    • The mRNA would be translated without ribosomes
  16. Which statement about gene expression in plants and animals is correct?

    • Animals express all genes equally in every cell
    • Plants use no differential gene expression because they lack a nucleus
    • Both use differential gene expression to produce specialised cells
    • Differential gene expression occurs only in bacteria
  17. In the lac operon, what is the role of the structural genes?

    • They encode the repressor that switches the operon off
    • They encode the ribosomes of the cell
    • They encode the enzymes needed to metabolise lactose
    • They encode the cell wall of the bacterium
  18. Why is a repressor protein described as negative control?

    • It switches gene expression off by binding DNA
    • It switches gene expression on by binding RNA polymerase
    • It switches on the operon only in the nucleus of eukaryotes
    • It switches off translation by degrading mRNA in the cytoplasm
  19. In an E. coli culture with lactose absent, what is the state of the lac operon?

    • It is switched on so that beta-galactosidase is made at high levels
    • It is destroyed by the presence of glucose in the medium
    • It stays switched off because the repressor is bound to the operator and no inducer is present
    • It is copied into mRNA but the mRNA is never translated
  20. Which DNA region is the binding site for RNA polymerase to start transcription?

    • The codon
    • The intron
    • The promoter
    • The operator

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