Should we try to bring extinct species back to life?

A The passenger pigeon was a legendary species. Flying in vast numbers across North America, with potentially many millions within a single flock, their migration was once one of nature’s great spectacles. Sadly, the passenger pigeon’s existence came to an end on 1 September 1914, when the last living specimen died at Cincinnati Zoo. Geneticist Ben Novak is lead researcher on an ambitious project which now aims to bring the bird back to life through a process known as ‘de-extinction’. The basic premise involves using cloning technology to turn the DNA of extinct animals into a fertilised embryo, which is carried by the nearest relative still in existence – in this case, the abundant band-tailed pigeon – before being born as a living, breathing animal. Passenger pigeons are one of the pioneering species in this field, but they are far from the only ones on which this cutting-edge technology is being trialled.

B In Australia, the thylacine, more commonly known as the Tasmanian tiger, is another extinct creature which genetic scientists are striving to bring back to life. ‘There is no carnivore now in Tasmania that fills the niche which thylacines once occupied,’ explains Michael Archer of the University of New South Wales. He points out that in the decades since the thylacine went extinct, there has been a spread in a ‘dangerously debilitating’ facial tumour syndrome which threatens the existence of the Tasmanian devils, the island’s other notorious resident. Thylacines would have prevented this spread because they would have killed significant numbers of Tasmanian devils. ‘If that contagious cancer had popped up previously, it would have burned out in whatever region it started. The return of thylacines to Tasmania could help to ensure that devils are never again subjected to risks of this kind.’

C If extinct species can be brought back to life, can humanity begin to correct the damage it has caused to the natural world over the past few millennia? ‘The idea of de-extinction is that we can reverse this process, bringing species that no longer exist back to life,’ says Beth Shapiro of University of California Santa Cruz’s Genomics Institute. ‘I don’t think that we can do this. There is no way to bring back something that is 100 per cent identical to a species that went extinct a long time ago.’ A more practical approach for long-extinct species is to take the DNA of existing species as a template, ready for the insertion of strands of extinct animal DNA to create something new; a hybrid, based on the living species, but which looks and/or acts like the animal which died out.

D This complicated process and questionable outcome begs the question: what is the actual point of this technology? ‘For us, the goal has always been replacing the extinct species with a suitable replacement,’ explains Novak. ‘When it comes to breeding, band-tailed pigeons scatter and make maybe one or two nests per hectare, whereas passenger pigeons were very social and would make 10,000 or more nests in one hectare.’ Since the disappearance of this key species, ecosystems in the eastern US have suffered, as the lack of disturbance caused by thousands of passenger pigeons wrecking trees and branches means there has been minimal need for regrowth. This has left forests stagnant and therefore unwelcoming to the plants and animals which evolved to help regenerate the forest after a disturbance. According to Novak, a hybridized band-tailed pigeon, with the added nesting habits of a passenger pigeon, could, in theory, re-establish that forest disturbance, thereby creating a habitat necessary for a great many other native species to thrive.

E Another popular candidate for this technology is the woolly mammoth. George Church, professor at Harvard Medical School and leader of the Woolly Mammoth Revival Project, has been focusing on cold resistance, the main way in which the extinct woolly mammoth and its nearest living relative, the Asian elephant, differ. By pinpointing which genetic traits made it possible for mammoths to survive the icy climate of the tundra, the project’s goal is to return mammoths, or a mammoth-like species, to the area. ‘My highest priority would be preserving the endangered Asian elephant,’ says Church, ‘expanding their range to the huge ecosystem of the tundra. Necessary adaptations would include smaller ears, thicker hair, and extra insulating fat, all for the purpose of reducing heat loss in the tundra, and all traits found in the now extinct woolly mammoth.’ This repopulation of the tundra and boreal forests of Eurasia and North America with large mammals could also be a useful factor in reducing carbon emissions – elephants punch holes through snow and knock down trees, which encourages grass growth. This grass growth would reduce temperature, and mitigate emissions from melting permafrost.

F While the prospect of bringing extinct animals back to life might capture imaginations, it is, of course, far easier to try to save an existing species which is merely threatened with extinction. ‘Many of the technologies that people have in mind when they think about de-extinction can be used as a form of “genetic rescue”,’ explains Shapiro. She prefers to focus the debate on how this emerging technology could be used to fully understand why various species went extinct in the first place, and therefore how we could use it to make genetic modifications which could prevent mass extinctions in the future. ‘I would also say there’s an incredible moral hazard to not do anything at all,’ she continues. ‘We know that what we are doing today is not enough, and we have to be willing to take some calculated and measured risks.’

Questions 14-17

Reading Passage 2 has six paragraphs, A-F.

Which paragraph contains the following information?

Write the correct letter, A-F, in boxes 14-17 on your answer sheet.

NB   You may use any letter more than once.


<p>14. a reference to how further disappearance of multiple species could be avoided. <question>【14】</question></p><p>15. explanation of a way of reproducing an extinct animal using the DNA of only that species <question>【15】</question></p><p>16. reference to a habitat which has suffered following the extinction of a species <question>【16】</question></p><p>17. mention of the exact point at which a particular species became extinct <question>【17】</question></p>
ABCDEF
14. a reference to how further disappearance of multiple species could be avoided.
15. explanation of a way of reproducing an extinct animal using the DNA of only that species
16. reference to a habitat which has suffered following the extinction of a species
17. mention of the exact point at which a particular species became extinct
Questions 18-22

Complete the summary below.

Choose NO MORE THAN TWO WORDS from the passage for each answer.

Write your answers in boxes 18-22 on your answer sheet.

Questions 23-26

Look at the following statements (Questions 23-26) and the list of people below.

Match each statement with the correct person, A, B or C.

Write the correct letter, A, B or C, in boxes 23-26 on your answer sheet.

NB   You may use any letter more than once.


A. Ben Novak
B. Michael Archer
C. Beth Shapiro
23. Reintroducing an extinct species to its original habitat could improve the health of a particular species living there.
23
24. It is important to concentrate on the causes of an animal’s extinction.
24
25. A species brought back from extinction could have an important beneficial impact on the vegetation of its habitat.
25
26. Our current efforts at preserving biodiversity are insufficient.
26
我的答案
14.
未作答
15.
未作答
16.
未作答
17.
未作答
正确答案
14.
F
15.
A
16.
D
17.
A
题目解析

题目定位词:further disappearance, multiple species, avoided
答案位置:F段第5-8行
题目:提及如何可以避免多个物种的进一步灭绝
读到F段时,文中提到 Shapiro “更倾向于将争论的焦点首先集中在如何利用这种新兴技术来充分理解各种物种灭绝的原因,以及如何利用它来进行基因改造,以防止未来出现大规模的灭绝”,其中 prevent 替换了题目中的avoided,mass extinctions 对应 disappearance of multiple species,in the future 对应 further。
因此答案为F。

题目定位词:DNA of only that species
答案位置:A段第7-8行
题目:解释一个只用灭绝物种的DNA来复活该物种的方式
文中提及DNA的只有A段和C段。读A段时,文中提到利用克隆技术将已灭绝动物的DNA转化为受精胚胎,再由其现存的近亲物种携带,这里只提到了灭绝物种的DNA、未提及其他物种的DNA,符合题目中的 only;而C段讲的是在现有物种的DNA中插入已灭绝物种的DNA链,提到了两种DNA,与题目中的 only 矛盾。
因此答案为A。

题目定位词:habitat, suffered, following the extinction of a species
答案位置:D段第6-7行
题目:提及一个物种灭绝之后,其栖息地也会遭殃
读到D段时,文中提到“自从这个重要的物种消失后,美国东部的生态系统就受到了影响”,其中 Since the disappearance 替换了题目中的 following the extinction,ecosystems 对应 habitat,suffered 原词重现。
因此答案为D。

题目定位词:exact point, a particular species, extinct
答案位置:A段第3-4行
题目: 题目:提及某物种灭绝的精确时间点
按照“逐段推进法”,本题应该是最早做出来的题目。在读题时已经可以推测出,所选段落应当包含一个具体的时间;读A段时,文中提到旅鸽灭绝于1914年9月1日,这是个具体的时间点,符合题目要求。
因此答案为A。

正确
错误
14
15
16
17
18
19
20
21
22
23
24
25
26
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