Bats to the rescue

How Madagascar’s bats are helping to save the rainforest

There are few places in the world where relations between agriculture and conservation are more strained. Madagascar’s forests are being converted to agricultural land at a rate of one percent every year. Much of this destruction is fuelled by the cultivation of the country’s main staple crop: rice. And a key reason for this destruction is that insect pests are destroying vast quantities of what is grown by local subsistence farmers, leading them to clear forest to create new paddy fields. The result is devastating habitat and biopersity loss on the island, but not all species are suffering. In fact, some of the island’s insectivorous bats are currently thriving and this has important implications for farmers and conservationists alike.

Enter University of Cambridge zoologist Ricardo Rocha. He’s passionate about conservation, and bats. More specifically, he’s interested in how bats are responding to human activity and deforestation in particular. Rocha’s new study shows that several species of bats are giving Madagascar’s rice farmers a vital pest control service by feasting on plagues of insects. And this, he believes, can ease the financial pressure on farmers to turn forest into fields.

Bats comprise roughly one-fifth of all mammal species in Madagascar and thirty-six recorded bat species are native to the island, making it one of the most important regions for conservation of this animal group anywhere in the world.

Co-leading an international team of scientists, Rocha found that several species of indigenous bats are taking advantage of habitat modification to hunt insects swarming above the country’s rice fields. They include the Malagasy mouse-eared bat, Major’s long-fingered bat, the Malagasy white-bellied free-tailed bat and Peters’ wrinkle-lipped bat.

‘These winner species are providing a valuable free service to Madagascar as biological pest suppressors,’ says Rocha. ‘We found that six species of bat are preying on rice pests, including the paddy swarming caterpillar and grass webworm. The damage which these insects cause puts the island’s farmers under huge financial pressure and that encourages deforestation.’

The study, now published in the journal Agriculture, Ecosystems and Environment, set out to investigate the feeding activity of insectivorous bats in the farmland bordering the Ranomafana National Park in the southeast of the country.

Rocha and his team used state-of-the-art ultrasonic recorders to record over a thousand bat ‘feeling buzzes’ (echolocation sequences used by bats to target their prey) at 54 sites, in order to identify the favourite feeding spots of the bats. The next used DNA barcoding techniques to analyse droppings collected from bats at the different sites.

The recordings revealed that bat activity over rice fields was much higher than it was in continuous forest – seven times higher over rice fields which were on flat ground, and sixteen times higher over fields on the sides of hills – leaving no doubt that the animals are preferentially foraging in these man-made ecosystems. The researchers suggest that the bats favour these fields because lack of water and nutrient run-off make these crops more susceptible to insect pest infestations. DNA analysis showed that all six species of bat had fed on economically important insect pests. While the findings indicated that rice farming benefits most from the bats, the scientists also found indications that the bats were consuming pests of other crops, including the black twig borer (which infests coffee plants), the sugarcane cicada, the macadamia nut-borer, and the sober tabby (a pest of citrus fruits).

‘The effectiveness of bats as pest controllers has already been proven in the USA and Catalonia,’ said co-author James Kemp, from the University of Lisbon. ‘But our study is the first to show this happening in Madagascar, where the stakes for both farmers and conservationists are so high.’

Local people may have a further reason to be grateful to their bats. While the animal is often associated with spreading disease, Rocha and his team found evidence that Malagasy bats feed not just on crop pests but also on mosquitoes – carriers of malaria, Rift Valley fever virus and elephantiasis – as well as blackflies, which spread river blindness.

Rocha points out that the relationship is complicated. When food is scarce, bats become a crucial source of protein for local people. Even the children will hunt them. And as well as roosting in trees, the bats sometimes roost in buildings, but are not welcomed there because they make them unclean. At the same time, however, they are associated with sacred caves and the ancestors, so they can be viewed as beings between worlds, which makes them very significant in the culture of the people. And one potential problem is that while these bats are benefiting from farming, at the same time deforestation is reducing the places where they can roost, which could have long-term effects on their numbers. Rocha says, ‘With the right help, we hope that farmers can promote this mutually beneficial relationship by installing bat houses.’

Rocha and his colleagues believe that maximising bat populations can help to boost crop yields and promote sustainable livelihoods. The team is now calling for further research to quantify this contribution. ‘I’m very optimistic,’ says Rocha. ‘If we give nature a hand, we can speed up the process of regeneration.’

Questions 1-6

Do the following statements agree with the information given in Reading Passage 1?

In boxes 1-6 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

1. Many Madagascan forests are being destroyed by attacks from insects.
2. Loss of habitat has badly affected insectivorous bats in Madagascar.
3. Ricardo Rocha has carried out studies of bats in different parts of the world.
4. Habitat modification has resulted in indigenous bats in Madagascar becoming useful to farmers.
5. The Malagasy mouse-eared bat is more common than other indigenous bat species in Madagascar.
6. Bats may feed on paddy swarming caterpillars and grass webworms.
Questions 7-13

Complete the table below.

Choose ONE WORD ONLY from the passage for each answer.

Write your answers in boxes 7-13 on your answer sheet. 

我的答案
1.
未作答
2.
未作答
3.
未作答
4.
未作答
5.
未作答
6.
未作答
正确答案
1.
FALSE
2.
FALSE
3.
NOT GIVEN
4.
TRUE
5.
NOT GIVEN
6.
TRUE
题目解析

题目关键词:Madagascan forest, attacks
答案位置:第 1 段第 2—5 行

题目:大片马达加斯加森林正遭受昆虫侵袭。

关键词明显,但需要阅读的部分较多,需要耐心。文中提及森林被转化为农田,国家主要农作物水稻的种植加剧了这一现象;而背后的原因是病虫害的侵袭,导致稻田被破坏(insect pests are destroying),继而导致(leading them)农民砍伐森林用作田地。题目中的 attacks from insects 虽然在原文中有提及,但并非虫害破坏森林,而是农作物受损, 才不得不砍伐森林所致,这与题目相矛盾, 因此答案为 FALSE。

题目关键词:loss of habitat, badly affected, insectivorous
答案位置:第 1 段第 6—8 行

题目:栖息地的丧失已经严重影响了马达加斯加的食虫蝙蝠。

关键词明显,需注意原文中以 but 引导的转折。原文中提及栖息地和生物多样性受损 (devastating habitat and biopersity loss),但是并非所有物种都遭受不测。食虫蝙蝠就在这个岛上蓬勃发展(thriving)。这与题目中的 badly effected 相矛盾,因此答案为 FALSE。

题目关键词:Ricardo, studies, different parts of the world
答案位置:第 2 段第 2—3 行

题目:Ricardo Rocha 对世界不同地区的蝙蝠进行了研究。 
关键词明显,需注意题目的成分是否都在原文有所体现。题目可简单划分为三个方面:人物、做研究、在世界各地做,而原文中只提到人物做了马达加斯加岛上的蝙蝠研究, 但是否在 different parts of the world 也做过,无从得知,因此答案为 NOT GIVEN。

题目关键词:habitat modification, resulted in, useful
答案位置:第 4 段第 1—3 行

题目:栖息地的改变使得马达加斯加的本土蝙蝠对农民变得有用。 
关键词并未改动,根据上文,提及病虫害使得马达加斯加岛的农民稻田受损,不得不砍伐森林,由此可知,防虫是对农民有用的事情。因此,尽管第 4 段关键句并未出现题目中 useful to farmers 的改写,也可推断当地的蝙蝠会利用 habitat modification 来捕食昆虫, 是对农民十分有用的事,因此答案为 TRUE。

题目关键词:Malagasy, more common than, other
答案位置:第 4 段第 3—4 行

题目:马达加斯加鼠耳蝙蝠比其他本土蝙蝠物种更常见。 
本题出现比较,根据考题解析的注意事项所示,对照原文可知,题目中的比较双方 Malagasy mouse-eared bat 和 other indigenous bat species(在原文中有 Major’s long-fingered bat 等三种)均有出现,但双方并未出现任何比较,因此答案为 NOT GIVEN。

题目关键词:feed on, paddy swarming caterpillars
答案位置:第 5 段第 2—3 行

题目:蝙蝠可能会捕食灰翅夜蛾和草螟。 
关键词明显。原文提及六种蝙蝠会捕食(preying on,即题目中 feed on 的同义改写)侵扰水稻的害虫,包含题目中出现的两种,因此答案为 TRUE。

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