Lesson 8.7.2
8.7.2 Drugs produced by genetically modified organisms Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 8
20 questions
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Lesson 8.7.2, Drugs produced by genetically modified organisms: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 8: Grey Matter, written with Revision Ninja.
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The 20 questions
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Which organism is commonly genetically modified to produce human insulin for diabetes treatment?
- Escherichia coli bacteria, which are modified with the human insulin gene and grown in fermenters
- Sequoia tree, a very tall conifer that grows in California and is used mainly for its timber
- Blue whale, a large marine mammal that is studied for its unusual feeding behaviour in the ocean
- Giant panda, a bear species that feeds mostly on bamboo and is rarely kept in captive breeding programmes
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What is the main advantage of using bacteria to make human proteins for medicine?
- They never need nutrients, so the cost of culture is very low compared with other methods
- They always produce identical copies of the human body, which makes them useful for organ transplants
- They grow quickly and can be cultured in large quantities in fermenters
- They produce human DNA directly, which is then collected and purified for use in patients
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Which technique is used to insert a human gene into bacteria to make a medicine?
- Light microscopy, which allows cells to be observed in detail but cannot be used to insert any gene
- Gel electrophoresis, which separates DNA fragments by size but does not insert any gene into a cell
- Chromatography, which separates the components of a mixture but does not change the genes of an organism
- Recombinant DNA technology, which joins a gene from one organism to the DNA of another
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Which vector is often used to carry a human gene into bacterial cells?
- A plasmid, a small circular piece of DNA that can carry a gene into bacteria and be copied within them
- A ribosome, a structure in the cytoplasm that makes proteins from the sequence of messenger RNA
- A red blood cell, which carries oxygen and is not used in genetic engineering of bacteria
- A lysosome, an organelle that contains digestive enzymes and breaks down waste material in the cell
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Which example shows a GM animal producing a drug in its milk?
- Goats modified to produce a human protein such as antithrombin in their milk, which is collected for medicine
- Chickens that lay eggs with yolk, which is a standard breeding trait and does not involve any modified gene
- Sheep that are shorn of wool, which is a traditional farming practice and does not use genetic engineering
- Cows that produce only skim milk, which is the result of selective breeding rather than genetic modification
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Which example shows a GM plant being used to produce a drug or vaccine?
- Tobacco plants modified to produce a human protein or vaccine component
- Trees that produce timber only, which are grown for wood and are not modified to make any drug
- Wheat that is made only for cereals, which is grown in fields and processed into flour for bread
- Cactus plants that store water only, which are native to deserts and do not produce any pharmaceutical protein
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Why might it be advantageous to use plants to produce drugs rather than animals?
- Plants do not need light or water, so they can be grown in any environment without any care
- Plants never contain DNA, which means they cannot be modified in any laboratory process
- Plants produce only human proteins naturally, so no genetic modification is needed at all
- Plants are cheaper to grow and avoid some ethical concerns about using animals
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Which property of a fermenter makes it suitable for producing drugs from GM microorganisms?
- It provides controlled conditions, such as temperature, pH and nutrients, for large-scale culture
- It stops microorganisms from dividing, which keeps the protein concentration constant during production
- It removes all oxygen from the medium at all times, which is required by every GM microorganism
- It converts the drug into DNA, which allows the product to be stored more easily for later use
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Why is the human insulin gene inserted into bacteria rather than producing insulin from pig insulin for all patients?
- Human insulin is cheaper to extract from pigs, so production from bacteria is only a fallback option
- Bacteria produce insulin without any gene, which is why they are used instead of animals
- Human insulin is identical to the human protein, reducing immune reactions compared with animal insulin
- Pig insulin cannot lower blood glucose at all, so it is useless for the treatment of diabetes
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A GM bacterium produces a protein at 2 grams per litre of culture. How much protein is produced by a 500 litre fermenter batch?
- 2500 grams, found by multiplying the yield of 2 grams per litre by 500 and adding a further 500 grams
- 250 grams, found by dividing the batch size of 500 litres by the yield of 2 grams per litre
- 1 gram, found by dividing the yield of 2 grams per litre by the batch size of 500 litres
- 1000 grams, found by multiplying the yield of 2 grams per litre by the batch size of 500 litres
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Which statement describes a risk in using GM microorganisms for drug production?
- Possibility of contamination or gene transfer, which must be controlled by containment and sterile conditions
- Drugs made by bacteria always contain harmful DNA, so every batch must be destroyed after production
- Bacteria cannot be controlled at all, so the process is impossible to manage in any industrial setting
- Bacteria are a source of insulin only, which means the process cannot be used for any other drug
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Which of these explains why GM organisms can produce human proteins?
- The host organism translates only human mRNA without any gene, which is supplied from the human body
- The human gene is transcribed and translated by the host's own cellular machinery
- The host organism produces human ribosomes, which are then used to make the human protein in the cell
- The host organism loses its own DNA, so that only the human genes are used in protein synthesis
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A GM organism produces a human protein that must be purified before use as a drug. Which process is most appropriate for this?
- Adding more DNA to the solution, which binds the protein and separates it from the other molecules
- Chromatography or filtration to separate the protein from other cell components
- Heating the protein to 1000 degrees C, which removes all impurities from the sample
- Exposing the protein to a magnetic field only, which is the standard method of purification for proteins
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What is the main ethical concern about using transgenic animals to make human drugs?
- Animals always die immediately after being modified, which makes them unsuitable for any drug production
- Animals cannot produce any protein, so the use of animals for drug production is scientifically impossible
- Animals cannot be legally kept, which means there is no ethical question to consider in the use of transgenic animals
- Animal welfare and whether the animals suffer as a result of genetic modification
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Which statement describes how a GM microorganism produces a drug?
- The microorganism uses the drug to make its own DNA, which then copies the drug to other cells
- The microorganism absorbs the drug from the air, which then stays in its cells and is released later
- The microorganism stores the drug as a salt, which is then broken down by the cell to release the protein
- The inserted human gene is transcribed into mRNA and translated into the drug protein
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A researcher argues that drugs from GM bacteria are always safer than drugs from natural sources. Which evaluation is best?
- Incorrect, because drugs cannot be safe, so the claim has no meaning for any medicine on the market
- Correct, because bacteria are always sterile, so the drugs are free from contamination in every case
- Correct, because GM products can never have side effects, since the bacteria are controlled
- Incorrect as a universal claim, because safety depends on purity, testing and the product, and must be assessed in each case
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A drug produced in GM plants is found to cause an allergic reaction in a few patients. Which response is most appropriate?
- Investigate the cause, test for impurities and assess risks before deciding on regulation or use
- Stop all research on plants immediately without evidence, since any allergy shows that plants are dangerous
- Increase the dose for everyone, which is the standard way to reduce the effect of an allergy
- Ignore the reaction because the drug is natural, so the reaction must be coincidental
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Which pair correctly matches a GM organism with the drug it produces?
- Tobacco plant: vitamin D only, which is the standard product of modified tobacco crops
- Goat: insulin only, which is the only drug that goats are known to produce in their milk
- Bacteria (E. coli): human insulin, which is the best-known example of this kind of production
- Yeast: red blood cells only, which yeast produce when they are genetically modified
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Which evaluation best supports the use of GM microorganisms for medicines?
- The process is entirely free of cost and risk, so no further regulation is needed for any product
- Large quantities can be produced consistently and cheaply, though regulation and purification are still needed
- The process produces no protein, which is why it is used only for research and not for medicine
- The process uses no nutrients or energy, which makes it the most sustainable method of drug production
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Which of the following is an example of a GM microorganism used in medicine?
- Bacteria producing human growth hormone, which is used to treat growth disorders
- Wild mushrooms gathered in forests, which are collected for food and are not genetically modified
- Soil fungi that are not cultured, which are studied in the field and not used in drug production
- Unmodified brewer's yeast used only for bread, which is grown in bakeries without any genetic change
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