Lesson 6.2.1
6.2.1 Structure of bacteria and viruses compared Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 6
20 questions
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Lesson 6.2.1, Structure of bacteria and viruses compared: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 6: Immunity, Infection and Forensics, written with Revision Ninja.
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The 20 questions
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Which feature is present in bacteria but absent from viruses?
- An outer envelope containing glycoproteins that help the particle attach to host cells
- A cytoplasm surrounded by a cell membrane, with ribosomes that synthesise proteins
- A nucleic acid genome that carries the instructions for making new virus particles
- A protein capsid that encloses the genetic material in a regular shape
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Bacterial DNA is typically described as:
- A single circular chromosome, not enclosed in a nuclear envelope, often with small plasmids
- Single-stranded RNA that is found free in the capsid without any associated proteins
- Multiple linear chromosomes enclosed within a double membrane in the nucleus
- A double-stranded linear chromosome bound to histone proteins inside a nucleolus
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The cell wall of most bacteria is made of:
- Chitin, a polymer of nitrogen-containing sugars that forms the walls of fungal cells
- Cellulose, a polymer of glucose that is found in the walls of plant and fungal cells
- Peptidoglycan, a polymer of sugars and amino acids that is not found in viruses or in plant cell walls
- Lipopolysaccharide only, a lipid-sugar mixture that forms the surface of every human cell
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Which best describes the size of a typical bacterium compared with a typical virus?
- A bacterium is typically around 1 millimetre, which is about 1,000 times larger than a virus
- A bacterium is typically around 1 to 5 micrometres
- A bacterium is typically around 20 to 300 nanometres, which is the same size as a virus
- A bacterium and a virus are both typically around 10 nanometres and cannot be told apart by size
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A viral particle is best described as having:
- A nucleic acid genome enclosed in a protein capsid
- A cell wall of peptidoglycan that protects the genetic material from damage
- A cell membrane, a cytoplasm and a nucleus containing linear chromosomes
- Ribosomes and mitochondria, which allow the particle to make its own energy
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Where are viruses able to replicate?
- They can replicate independently in soil and water using their own ribosomes
- They carry out aerobic respiration in their own mitochondria to release energy
- They can only replicate inside a living host cell, using its ribosomes and enzymes
- They divide by binary fission, which produces two identical virus particles
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Which structure in bacteria is the site of protein synthesis?
- The nucleus, which contains the bacterial chromosome and controls protein synthesis
- Chloroplasts, which carry out photosynthesis in the cytoplasm of bacteria
- Mitochondria, which are the sites of aerobic respiration in bacterial cells
- Ribosomes, which are smaller 70S ribosomes in the cytoplasm
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Which feature is found in some viruses but not bacteria, and helps them attach to host cells?
- A peptidoglycan cell wall that binds to the surface of the host cell through sugar chains
- A flagellum that rotates to propel the virus through the blood of the host organism
- An outer lipid envelope with glycoproteins that bind to receptors on the host cell surface
- A nucleus that holds the genetic material and attaches to the membrane of the host cell
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Antibiotics are effective against bacteria but not viruses because:
- Antibiotics are broken down by the capsid of every virus, so they cannot reach the genome
- Antibiotics only work on Gram-negative bacteria, which have no cell wall at all
- Viruses are too large for antibiotics to enter, but bacteria are small enough to be affected
- Antibiotics target structures such as the bacterial cell wall or 70S ribosomes
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Which statement compares the genetic material of bacteria and viruses correctly?
- Bacteria always carry DNA, but viruses may carry either DNA or RNA as their genetic material
- Bacteria carry RNA only, but viruses always carry double-stranded DNA as their genetic material
- Both bacteria and viruses carry only DNA in a linear form, enclosed in a nuclear membrane
- Neither bacteria nor viruses carry any genetic material and rely on the host for all instructions
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Why are bacteria described as prokaryotic?
- Because they are multicellular and have specialised tissues with nuclei in each cell
- Because they are formed from a capsid and an envelope with no cytoplasm inside
- Because they contain a large number of membrane-bound organelles including mitochondria
- Because they lack a membrane-bound nucleus and other membrane-bound organelles
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A student compares a bacterium and a virus under an electron microscope. Which observation would show that the specimen is the bacterium?
- A single layer of glycoprotein spikes on the surface and no internal structures visible
- A lipid envelope with no internal organisation and a small bundle of nucleic acid
- A cytoplasm containing ribosomes, surrounded by a plasma membrane and a cell wall
- A protein coat arranged in a regular geometric shape with no internal cytoplasm
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Which statement evaluates the claim that viruses are living organisms?
- The claim is contested, because viruses have genetic material and evolve but cannot replicate or metabolise outside a host cell
- The claim is true only for enveloped viruses, because they can photosynthesise in sunlight
- The claim is certainly false, because viruses are made of DNA and so cannot evolve by natural selection
- The claim is certainly true, because viruses carry out respiration and grow in size as all living things do
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Which structure is present in both a bacterial cell and a human cell?
- A nucleus, which contains the linear chromosomes that carry the genetic information
- A peptidoglycan cell wall, which provides support and prevents bursting in every cell
- Chloroplasts, which absorb light energy and convert it into chemical energy in the cytoplasm
- A cell membrane, which controls movement of substances into and out of the cell
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A bacterium is 2 micrometres long and a virus is 100 nanometres long. How many times longer is the bacterium?
- 1,000 times, since one micrometre is always 1,000 times longer than one nanometre
- 20 times, since 2 micrometres equals 2,000 nanometres and 2,000 divided by 100 is 20
- 200 times, since 2 micrometres equals 200 nanometres and 200 divided by 1 is 200
- 2 times, since 2 micrometres and 100 nanometres differ by a factor of two only
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Which feature distinguishes a bacterial plasmid from the main bacterial chromosome?
- A plasmid is a small, extra circular DNA molecule that is not essential for basic cell survival
- A plasmid is a membrane-bound nucleus that stores genetic information separately in the cell
- A plasmid is a protein coat around the bacterium that protects it from antibiotics
- A plasmid is a linear chromosome that is always larger than the main bacterial chromosome
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Which statement about the capsid is accurate?
- The capsid is a protein coat that protects the viral genome and may help it attach to host cells
- The capsid is a peptidoglycan wall that gives the virus its shape and rigidity
- The capsid is a membrane of phospholipid that controls the movement of molecules into the virus
- The capsid is a ribosome that synthesises the proteins needed to make new virus particles
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Which property is shared by bacteria and viruses?
- Both have a nucleus that contains linear chromosomes separated from the cytoplasm
- Both respire aerobically using mitochondria located inside the cell membrane
- Both carry genetic material that can mutate
- Both build their own ribosomes in a nucleolus before making any proteins
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A student applies the Gram stain to bacteria. What does the stain reveal about the bacteria?
- The number of ribosomes present in the cytoplasm of each bacterium on the slide
- Whether a virus particle has a capsid or an envelope around its genetic material
- The presence or absence of a nucleus, which separates eukaryotes from prokaryotes
- Differences in peptidoglycan wall structure
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Which feature allows bacteria to grow and reproduce without a host cell?
- Dependence on host ribosomes for the synthesis of every protein they need to survive
- A glycoprotein envelope that fuses with host membranes to deliver the genome into cells
- A capsid that releases nucleic acid into a host cell once it attaches to the surface
- Their own ribosomes and metabolic enzymes
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