Spider Silk Cuts Weight Of Bridges - IELTS Reading Answers & Explanations
From Official IELTS Practice Materials Academic Reading Test 1 · Part 1 · Questions 1–13
Reading Passage
You should spend about 20 minutes on Questions 1-13, which are based on Reading Passage 1 below.
Spider silk cuts weight of bridges
A strong, light bio-material made by genes from spiders could transform construction and industry
A Scientists have succeeded in copying the silk-producing genes of the Golden Orb Weaver spider and are using them to create a synthetic material which they believe is the model for a new generation of advanced bio-materials. The new material, biosilk, which has been spun for the first time by researchers at DuPont, has an enormous range of potential uses in construction and manufacturing.
B The attraction of the silk spun by the spider is a combination of great strength and enormous elasticity, which man-made fibres have been unable to replicate. On an equal-weight basis, spider silk is far stronger than steel and it is estimated that if a single strand could be made about 10m in diameter, it would be strong enough to stop a jumbo jet in flight. A third important factor is that it is extremely light. Army scientists are already looking at the possibilities of using it for lightweight, bullet-proof vests and parachutes.
C For some time, biochemists have been trying to synthesise the drag-line silk of the Golden Orb Weaver. The drag-line silk, which forms the radial arms of the web, is stronger than the other parts of the web and some biochemists believe a synthetic version could prove to be as important a material as nylon, which has been around for 50 years, since the discoveries of Wallace Carothers and his team ushered in the age of polymers.
D To recreate the material, scientists, including Randolph Lewis at the University of Wyoming, first examined the silk-producing gland of the spider. 'We took out the glands that produce the silk and looked at the coding for the protein material they make, which is spun into a web. We then went looking for clones with the right DNA,' he says.
E At DuPont, researchers have used both yeast and bacteria as hosts to grow the raw material, which they have spun into fibres. Robert Dorsch, DuPont's director of biochemical development, says the globules of protein, comparable with marbles in an egg, are harvested and processed. 'We break open the bacteria, separate out the globules of protein and use them as the raw starting material. With yeast, the gene system can be designed so that the material excretes the protein outside the yeast for better access,' he says.
F 'The bacteria and the yeast produce the same protein, equivalent to that which the spider uses in the drag lines of the web. The spider mixes the protein into a water-based solution and then spins it into a solid fibre in one go. Since we are not as clever as the spider and we are not using such sophisticated organisms, we substituted man-made approaches and dissolved the protein in chemical solvents, which are then spun to push the material through small holes to form the solid fibre.'
G Researchers at DuPont say they envisage many possible uses for a new biosilk material. They say that earthquake-resistant suspension bridges hung from cables of synthetic spider silk fibres may become a reality. Stronger ropes, safer seat belts, shoe soles that do not wear out so quickly and tough new clothing are among the other applications. Biochemists such as Lewis see the potential range of uses of biosilk as almost limitless. 'It is very strong and retains elasticity; there are no man-made materials that can mimic both these properties. It is also a biological material with all the advantages that has over petrochemicals,' he says.
H At DuPont's laboratories, Dorsch is excited by the prospect of new super-strong materials but he warns they are many years away. 'We are at an early stage but theoretical predictions are that we will wind up with a very strong, tough material, with an ability to absorb shock, which is stronger and tougher than the man-made materials that are conventionally available to us,' he says.
I The spider is not the only creature that has aroused the interest of material scientists. They have also become envious of the natural adhesive secreted by the sea mussel. It produces a protein adhesive to attach itself to rocks. It is tedious and expensive to extract the protein from the mussel, so researchers have already produced a synthetic gene for use in surrogate bacteria.
Questions
Questions 1–5 Matching Information
Reading Passage 1 has nine paragraphs, A-I.
Which paragraph contains the following information?
Write the correct letter, A-I, in boxes 1-5 on your answer sheet.
Questions 6–10 Flow Chart Completion
Complete the flow-chart below.
Choose NO MORE THAN TWO WORDS from the passage for each answer.
Synthetic gene grown
in 6 or 7 .
↓
globules of 8 .
↓
dissolved in 9 .
↓
passed through 10 .
↓
to produce a solid fibre
Questions 11–13 True / False / Not Given
Do the following statements agree with the information given in Reading Passage 1?
In boxes 11-13 on your answer sheet, write
TRUE if the statement agrees with the information
FALSE if the statement contradicts the information
NOT GIVEN if there is no information on this
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q1 | E | 'We break open the bacteria, separate out the globules of protein and use them as the raw starting material. With yeast, the gene system can be designed so that the material excretes the protein outside the yeast for better access,' he says | Excerpt/Passage Explanation: The passage explains the difference in how two materials (bacteria and yeast) are used to get the protein needed for synthetic silk: bacteria must be broken open, while yeast releases the protein outside itself. Answer Explanation: The answer choice E means that Paragraph E contains the comparison of how two organisms/materials (yeast and bacteria) are used to make spider silk protein instead of using the spider's glands. Reason For Correctness: The correct answer is E because Paragraph E compares how two different materials—bacteria and yeast—are handled to produce the silk protein. The paragraph explains that researchers break open bacteria to take out the protein, whereas with yeast, the protein is pushed outside the organism automatically for easier collection. |
| Q2 | H | At DuPont's laboratories, Dorsch is excited by the prospect of new super-strong materials but he warns they are many years away | Excerpt/Passage Explanation: The passage explains that although the scientist is excited about this new strong material, he cautions that it will take a long time (many years) before it becomes available to buy or use. Answer Explanation: The answer "H" means Paragraph H contains the information asked in the question. Reason For Correctness: The correct answer is H because Paragraph H talks about when the synthetic spider silk will be ready for use. It states that Dorsch "warns they are many years away" and mentions "theoretical predictions" about the material. Here, "many years away" relates directly to the availability of the material in the future. |
| Q3 | I | The spider is not the only creature that has aroused the interest of material scientists. They have also become envious of the natural adhesive secreted by the sea mussel. It produces a protein adhesive to attach itself to rocks. It is tedious and expensive to extract the protein from the mussel, so researchers have already produced a synthetic gene for use in surrogate bacteria | Excerpt/Passage Explanation: The passage explains that scientists are not only interested in spiders, but also in sea mussels. They want to copy the mussel's glue to make a man-made (synthetic) material using bacteria. Answer Explanation: The answer choice I refers to Paragraph I. Reason For Correctness: The correct answer is I because Paragraph I talks about scientists studying another animal besides spiders—the sea mussel—to make a different man-made material. Keywords like 'not the only creature' and 'natural adhesive secreted by the sea mussel' show that researchers are looking into other natural items to create new 'synthetic' (man-made) products. |
| Q4 | D | To recreate the material, scientists, including Randolph Lewis at the University of Wyoming, first examined the silk-producing gland of the spider | Excerpt/Passage Explanation: The passage explains that to make this new material, scientists studied the gland (body part) of the spider that makes silk. Answer Explanation: The answer 'D' refers to Paragraph D in the reading passage. Reason For Correctness: The correct answer is D because Paragraph D describes how scientists studied the specific body part of the spider responsible for making silk. It explains that researchers examined the 'silk-producing gland' (the part that manufactures silk) to understand the protein and DNA used to create the material. |
| Q5 | G | They say that earthquake-resistant suspension bridges hung from cables of synthetic spider silk fibres may become a reality | Excerpt/Passage Explanation: The passage states that scientists believe fake spider silk can be turned into strong cables to hold up bridges that will not easily break during earthquakes. Answer Explanation: The answer G means paragraph G is the section of the passage that contains the specified information. Reason For Correctness: The correct answer is G because paragraph G describes using synthetic spider silk to build suspension bridges that can survive earthquakes. Building large public structures like bridges is a main area of civil engineering, making this a clear example of an application (use) in that field. |
| Q6 | yeast / bacteria / bacterias | At DuPont, researchers have used both yeast and bacteria as hosts to grow the raw material, which they have spun into fibres | Excerpt/Passage Explanation: The passage explains that scientists used two things—yeast and bacteria—to grow the basic material before turning it into strong threads. Answer Explanation: The answer means a tiny living thing that helps the raw material grow. Reason For Correctness: The correct answer is 'yeast' because paragraph E explains that scientists at DuPont used 'yeast' along with 'bacteria' as host living organisms to grow the raw material needed to produce the new biosilk fibre. |
| Q7 | yeast / bacteria / bacterias | At DuPont, researchers have used both yeast and bacteria as hosts to grow the raw material, which they have spun into fibres | Excerpt/Passage Explanation: The passage states that researchers used both yeast and bacteria to grow the main material used to make the new silk threads. Answer Explanation: The answer means bacteria, which are tiny living organisms used to grow the biological material. Reason For Correctness: The correct answer is 'bacteria' because the passage explains that scientists used two living hosts—yeast and bacteria—to grow the raw material. The flowchart asks for the two organisms where the synthetic gene is grown. |
| Q8 | protein | Robert Dorsch, DuPont's director of biochemical development, says the globules of protein, comparable with marbles in an egg, are harvested and processed | Excerpt/Passage Explanation: The passage explains that scientists gather small, round pieces (globules) made of protein so they can use them as the main ingredient for making the new material. Answer Explanation: The answer "protein" refers to the material found inside tiny round drops (globules) that scientists collect to make artificial silk. Reason For Correctness: The correct answer is "protein" because paragraph E directly mentions "globules of protein" being harvested and processed during the production process. The flowchart follows the step-by-step method described in paragraphs E and F, making "protein" the exact word needed to complete the blank after "globules of". |
| Q9 | chemical solvents | we substituted man-made approaches and dissolved the protein in chemical solvents, which are then spun to push the material through small holes to form the solid fibre | Excerpt/Passage Explanation: The passage explains that scientists put the protein into liquid chemicals to melt it down so it can be pushed through small holes to create solid strands. Answer Explanation: The answer "chemical solvents" refers to special man-made liquid chemicals used to break down or dissolve other substances. Reason For Correctness: The correct answer is "chemical solvents" because the passage explains the steps used by scientists to make synthetic spider silk. In paragraph F, it explicitly states that researchers "dissolved the protein in chemical solvents" before pushing the material through tiny holes to create a solid fiber. |
| Q10 | small holes / holes | Since we are not as clever as the spider and we are not using such sophisticated organisms, we substituted man-made approaches and dissolved the protein in chemical solvents, which are then spun to push the material through small holes to form the solid fibre | Excerpt/Passage Explanation: The passage states that scientists mix the protein in chemicals and then force this liquid through small holes so that it turns into a solid thread. Answer Explanation: The answer refers to tiny openings that the liquid mixture is pushed through to create solid thread. Reason For Correctness: The correct answer is "small holes" because paragraph F describes the step-by-step process of making the bio-material. In this step, the protein liquid is pushed (passed) through "small holes" to shape it into a solid fibre. |
| Q11 | FALSE | Army scientists are already looking at the possibilities of using it for lightweight, bullet-proof vests and parachutes | Excerpt/Passage Explanation: The passage explains that army scientists are currently studying if it might be possible to use the material for parachutes in the future. This shows that Biosilk has not already replaced nylon. Answer Explanation: The answer choice 'FALSE' means the statement is incorrect based on the text. Reason For Correctness: The correct answer is FALSE because the passage states that military scientists are only thinking about and studying the idea of using Biosilk for parachutes. It has not actually replaced nylon yet. Keywords like 'looking at the possibilities' show that this is an idea for the future, not something that has already happened. |
| Q12 | TRUE | The drag-line silk, which forms the radial arms of the web, is stronger than the other parts of the web | Excerpt/Passage Explanation: The passage explains that the silk used for the radial arms of a spider's web is stronger than the silk used in other parts of the web. Answer Explanation: The answer "TRUE" means that the statement agrees with what is written in the text. Reason For Correctness: The correct answer is TRUE because the text clearly states that one type of silk (drag-line silk) is "stronger than the other parts of the web." This shows that the spider makes silk that has different or varying levels of strength. |
| Q13 | NOT GIVEN | To recreate the material, scientists, including Randolph Lewis at the University of Wyoming, first examined the silk-producing gland of the spider Robert Dorsch, DuPont's director of biochemical development, says the globules of protein, comparable with marbles in an egg, are harvested and processed |
Excerpt/Passage Explanation: The passage shows that Randolph Lewis works at the University of Wyoming and Robert Dorsch works at DuPont. However, it never says if they worked together. Answer Explanation: The answer means that the text does not say if Randolph Lewis and Robert Dorsch worked together to make artificial silk. Reason For Correctness: The correct answer is NOT GIVEN because the passage mentions both Randolph Lewis (from the University of Wyoming) and Robert Dorsch (from DuPont), but it does not state whether they co-operated (worked together). Since the text gives no information about them collaborating as a team, we cannot say if the statement is true or false. |
