Lesson 2.4.1
2.4.1 DNA replication and the Meselson and Stahl experiment Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 2
20 questions
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Lesson 2.4.1, DNA replication and the Meselson and Stahl experiment: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 2: Genes and Health, written with Revision Ninja.
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The 20 questions
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Meselson and Stahl's experiment supported a model of DNA replication. What does 'semi-conservative' mean?
- The two original strands stay together in one molecule and the second molecule is built entirely from new strands
- Each daughter molecule contains two strands made from random pieces of the parent molecule
- New DNA is scattered in short pieces between original and new segments, so every strand is a mixture
- Each daughter DNA molecule contains one original strand and one newly synthesised strand
-
In Meselson and Stahl's experiment, bacteria were first grown in a medium containing which isotope of nitrogen?
- Carbon-14 (14C), a radioactive isotope of carbon
- Nitrogen-15 (15N), a heavy isotope of nitrogen
- Phosphorus-32 (32P), a radioactive isotope of phosphorus
- Nitrogen-14 (14N), the common light isotope of nitrogen
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Which enzyme adds free nucleotides to the growing end of a new DNA strand?
- DNA ligase, which joins Okazaki fragments on the lagging strand
- DNA helicase, which unwinds the double helix at the replication fork
- RNA primase, which makes the RNA primer used to start synthesis
- DNA polymerase, which adds nucleotides to the free 3' end of a growing strand
-
What is the role of DNA helicase during replication?
- Joins Okazaki fragments on the lagging strand by forming phosphodiester bonds
- Breaks hydrogen bonds between complementary bases so that the two strands separate
- Adds free deoxynucleotides to the 3' end of a growing strand in pairs
- Removes RNA primers and replaces them with DNA nucleotides
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In which direction is a new DNA strand always synthesised?
- In whichever direction is faster on the leading or lagging template
- In both directions at once, moving outwards from the origin of replication
- Always 5' to 3', adding nucleotides to the free 3' end of the growing strand
- Always 3' to 5', adding nucleotides to the free 5' end of the growing strand
-
Which statement correctly contrasts the leading and lagging strands?
- The leading strand is made continuously towards the replication fork, the lagging strand discontinuously away from it
- Both strands are made continuously at equal rates, moving in opposite directions along the fork
- The leading strand is made discontinuously in short fragments, the lagging strand as one continuous strand
- The lagging strand is made continuously in the direction of unwinding, the leading strand in short fragments
-
Which pair of bases is correctly matched by hydrogen bonding in DNA?
- Adenine with uracil, and guanine with thymine
- Adenine with guanine, and thymine with cytosine
- Adenine with thymine, and guanine with cytosine
- Adenine with cytosine, and thymine with guanine
-
A bacterium with fully 15N-labelled DNA is transferred to 14N medium. What is seen in the DNA after one generation?
- Two separate bands, one heavy and one light, in equal amounts
- A single heavy band, because no 14N has yet been incorporated
- A single band of intermediate density, halfway between heavy and light DNA
- A single light band, because all new DNA is made from 14N
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After two generations in 14N medium, which bands are expected in a density gradient?
- One band of intermediate density only
- Three bands: heavy, intermediate and light, in equal amounts
- Two bands: one intermediate-density band and one light band
- Two bands: one heavy band and one light band
-
A single double-stranded DNA molecule labelled with 15N is replicated for three generations in 14N. How many of the resulting molecules contain some 15N?
- 4 molecules
- 8 molecules
- 1 molecule
- 2 molecules
-
A DNA molecule labelled with 15N is replicated for four generations in 14N medium. What percentage of the resulting double-stranded molecules is entirely 14N?
- 25%
- 87.5%
- 12.5%
- 50%
-
A student observes only an intermediate-density band after one generation of replication. Which model does this rule out?
- Dispersive replication, which predicts a single intermediate band after one generation
- Conservative replication, which predicts separate heavy and light bands after one generation
- Semi-conservative replication, which predicts a single intermediate band after one generation
- Semi-conservative replication, which predicts only light DNA after one generation
-
In the second generation a light band appears alongside an intermediate band. Which model does this refute?
- Semi-conservative replication, because it predicts only heavy DNA in generation two
- Semi-conservative replication, because it predicts a light band in generation two
- Dispersive replication, because it predicts all DNA would remain intermediate in density
- Conservative replication, because it predicts only intermediate DNA in generation two
-
A DNA sample contains 30% adenine. What percentage of its bases is cytosine?
- 20%
- 30%
- 10%
- 40%
-
Why do lagging-strand Okazaki fragments require DNA ligase?
- To unwind the double helix ahead of the replication fork
- To break hydrogen bonds between complementary bases
- To join adjacent fragments by forming phosphodiester bonds between nucleotides
- To add the RNA primer that starts each fragment
-
Why does DNA polymerase need a primer before it can begin synthesis?
- It requires a primer to break the hydrogen bonds between complementary bases
- It can only synthesise DNA that is already single-stranded in both directions
- It can only add nucleotides to an existing free 3' end
- It can only add nucleotides to a free 5' end, so a primer must remove one
-
A segment of 100 base pairs contains 40 G-C pairs and 60 A-T pairs. How many hydrogen bonds hold the segment together?
- 300
- 200
- 260
- 240
-
Which enzyme synthesises the short RNA primer needed to start DNA replication?
- Topoisomerase
- Helicase
- DNA ligase
- Primase
-
Why does the lagging strand need to be made in short fragments?
- DNA polymerase can only add nucleotides to the lagging strand in pairs at each step
- Its template runs antiparallel to the direction the fork opens
- Its template is shorter than the leading strand template, so fewer nucleotides are needed
- Helicase unwinds that strand in short bursts, so synthesis must match each burst
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If one generation of DNA replication were conservative, what would the density gradient show after the first generation?
- Light DNA only, with no heavy band
- Heavy DNA only, with no light band
- Heavy DNA and light DNA as two separate bands
- A single band of intermediate density only
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