Lesson 3.4.2.2
3.4.2.2 Translation and the genetic code Quiz: AQA Biology, Unit 4
20 questions
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Lesson 3.4.2.2, Translation and the genetic code: 20 multiple choice questions for the AQA Biology (7402), Unit 4: Genetic information, variation and relationships, written with Revision Ninja.
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The 20 questions
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Where does translation take place?
- In the mitochondrial matrix, where the DNA is read directly by RNA polymerase.
- On ribosomes, in the cytoplasm or on the rough endoplasmic reticulum.
- In the nucleus, on the surface of the chromosomes during interphase.
- In the Golgi apparatus, where the polypeptide is packaged into vesicles.
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What is the role of ATP in translation?
- It joins the bases of the mRNA together to form the codons on the mRNA strand.
- It removes introns from the pre-mRNA before the mRNA leaves the nucleus.
- It carries the amino acid to the ribosome, where the anticodon pairs with the codon.
- It provides the energy needed to join amino acids together and to move the ribosome along the mRNA.
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Which molecules are needed to carry out translation?
- DNA, RNA polymerase, histones and introns.
- mRNA, tRNA, ribosomes and ATP.
- Pre-mRNA, plasmids, cellulose and glycogen.
- DNA polymerase, lysozymes, micelles and bile salts.
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What is a codon?
- A sequence of three amino acids in a polypeptide that codes for a single base.
- A sequence of three bases on mRNA that codes for a specific amino acid.
- A sequence of three bases on tRNA that is removed by splicing before translation.
- A sequence of three bases in an intron that is removed from the DNA during transcription.
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What is an anticodon?
- A sequence of three bases on tRNA that pairs with a codon on mRNA.
- A sequence of three bases on rRNA that is removed from the ribosome during translation.
- A sequence of three bases on mRNA that pairs with a codon on the DNA template.
- A sequence of three amino acids on a polypeptide that matches a codon on tRNA.
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A tRNA has the anticodon UAC. Which mRNA codon does it pair with?
- AUG
- CAU
- GUA
- UAC
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A polypeptide has five amino acids. What is the minimum number of bases in the mRNA that codes for it, excluding any stop codon?
- 10
- 5
- 20
- 15
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Why does the degenerate nature of the genetic code reduce the effect of some base substitutions?
- A change in a base is removed by splicing, so the amino acid sequence is never affected.
- A change in a base creates a new codon that codes for a histone protein instead.
- A change in a base can still produce a triplet coding for the same amino acid, leaving the polypeptide unchanged.
- A change in a base always changes the amino acid, so the polypeptide is always altered.
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Which description best matches how a ribosome reads an mRNA molecule during translation?
- It reads codons in order, one at a time, bringing the matching tRNA with its amino acid.
- It reads introns first, removing them before the codons can be translated.
- It reads the DNA template directly, skipping the mRNA step entirely.
- It reads the whole mRNA molecule at once, joining all amino acids in a single step.
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A researcher uses data from a genetic code table to relate a DNA sequence to a polypeptide. What skill is being used?
- Calculating the water potential of a plant tissue from its change in mass.
- Relating the base sequence of nucleic acids to the amino acid sequence of polypeptides.
- Measuring the rate of photosynthesis in a leaf disc using a light intensity series.
- Counting the number of stomata in a leaf epidermis using a light microscope.
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What does a stop codon do during translation?
- It codes for the amino acid methionine, which starts the chain on the ribosome.
- It signals that translation should end and the polypeptide is released from the ribosome.
- It joins two tRNA molecules together so that the chain can grow longer.
- It signals that transcription should start, so RNA polymerase binds to the DNA.
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Which statement describes how tRNA carries amino acids?
- Each tRNA carries one specific amino acid attached to its 3' end, and its anticodon matches a codon.
- Each tRNA carries a whole polypeptide attached to its anticodon end, which then joins the ribosome.
- Each tRNA carries a codon that pairs with an amino acid on the surface of the ribosome.
- Each tRNA carries many amino acids in a single chain, which are released one by one.
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A mutation changes a codon so that the new codon codes for the same amino acid. What is the effect on the polypeptide?
- The polypeptide is lengthened, because the codon now codes for two amino acids.
- The polypeptide is unchanged, because the amino acid sequence is the same.
- The polypeptide is replaced by a tRNA, because the codon no longer codes for an amino acid.
- The polypeptide is shortened, because the codon now acts as a stop codon.
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What happens to the tRNA molecule after it has delivered its amino acid to the ribosome?
- It is joined to the polypeptide and remains part of the completed protein.
- It moves back into the nucleus, where it joins with the next gene to be transcribed.
- It is released and can pick up another molecule of the same amino acid.
- It is destroyed by the ribosome, which uses its bases as energy.
-
An mRNA of 18 bases has no introns and ends with one stop codon. How many amino acids does it code for?
- 5
- 18
- 17
- 6
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What determines the order of amino acids in a polypeptide?
- The number of ribosomes attached to the rough endoplasmic reticulum in the cell.
- The number of tRNA molecules available in the cytoplasm at that particular moment.
- The order of introns in the pre-mRNA, which are spliced out in sequence.
- The order of codons on the mRNA, which the ribosome reads in sequence.
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A student says translation takes place in the nucleus because the DNA is there. Evaluate this claim.
- The claim is partly right, because translation occurs in the nucleus only in prokaryotic cells.
- The claim is right, because DNA is directly read by ribosomes inside the nucleus during translation.
- The claim is right, because tRNA is made in the nucleus and joins amino acids together there.
- The claim is wrong, because translation takes place on ribosomes, using mRNA that has left the nucleus.
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Which statement describes how a ribosome moves along an mRNA during translation?
- It stays still while the mRNA is pulled through it one codon at a time by tRNA.
- It moves along the mRNA one base at a time, reading in the 3' to 5' direction.
- It moves along the mRNA one codon at a time, reading in the 5' to 3' direction.
- It moves along the DNA template in the nucleus, reading one codon at a time.
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A cell has a shortage of ATP. What is the predicted effect on translation?
- Translation speeds up, because ATP is used to break down mRNA more quickly in the cytoplasm.
- Translation is unchanged, because ATP is used only in transcription and never in translation.
- Translation is unaffected, because ribosomes do not require energy to join amino acids together.
- Translation slows or stops, because joining amino acids and moving the ribosome both need ATP.
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What is the name of the bond that links amino acids together in a polypeptide during translation?
- A hydrogen bond
- An ester bond
- A glycosidic bond
- A peptide bond
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