The effects of light on plant and animal species
Light is important to organisms for two different reasons. Firstly it is used as a cue for the timing of daily and seasonal rhythms in both plants and animals, and secondly it is used to assist growth in plants.
Breeding in most organisms occurs during a part of the year only, and so a reliable cue is needed to trigger breeding behaviour. Day length is an excellent cue, because it provides a perfectly predictable pattern of change within the year. In the temperate zone in spring, temperatures fluctuate greatly from day to day, but day length increases steadily by a predictable amount. The seasonal impact of day length on physiological responses is called photoperiodism, and the amount of experimental evidence for this phenomenon is considerable. For example, some species of birds’ breeding can be induced even in midwinter simply by increasing day length artificially (Wolfson 1964). Other examples of photoperiodism occur in plants. A short-day plant flowers when the day is less than a certain critical length. A long-day plant flowers after a certain critical day length is exceeded. In both cases the critical day length differs from species to species. Plants which flower after a period of vegetative growth, regardless of photoperiod, are known as day-neutral plants.
Breeding seasons in animals such as birds have evolved to occupy the part of the year in which offspring have the greatest chances of survival. Before the breeding season begins, food reserves must be built up to support the energy cost of reproduction, and to provide for young birds both when they are in the nest and after fledging. Thus many temperate-zone birds use the increasing day lengths in spring as a cue to begin the nesting cycle, because this is a point when adequate food resources will be assured.
The adaptive significance of photoperiodism in plants is also clear. Short-day plants that flower in spring in the temperate zone are adapted to maximising seedling growth during the growing season. Long-day plants are adapted for situations that require fertilization by insects, or a long period of seed ripening. Short-day plants that flower in the autumn in the temperate zone are able to build up food reserves over the growing season and over winter as seeds. Day-neutral plants have an evolutionary advantage when the connection between the favourable period for reproduction and day length is much less certain. For example, desert annuals germinate, flower and seed whenever suitable rainfall occurs, regardless of the day length.
The breeding season of some plants can be delayed to extraordinary lengths. Bamboos are perennial grasses that remain in a vegetative state for many years and then suddenly flower, fruit and die (Evans 1976). Every bamboo of the species Chusquea abietifolia on the island of Jamaica flowered, set seed and died during 1884. The next generation of bamboo flowered and died between 1916 and 1918, which suggests a vegetative cycle of about 31 years. The climatic trigger for this flowering cycle is not yet known, but the adaptive significance is dear.The simultaneous production of masses of bamboo seeds (in some cases lying 12 to 15 centimetres deep on the ground) is more than all the seed-eating animals can cope with at the time, so chat some seeds escape being eaten and grow up to form the next generation (Evans 1976).
The second reason light is important to organisms is that it is essential for photosynthesjs. This is the process by which plants use energy from the sun to convert carbon from soil or water into organic material for growth. The rate of photosynthesis in a plant can be measured by calculating the rate of its uptake of carbon. There is a wide range of photosynthetic responses of plants to variations in light intensity. Some plants reach maximal photosynthesis at one-quarter full sunlight, and others, like sugarcane, never reach a maximum, but continue to increase photosynthesis rate as light intensity rises.
Plants in general can be pided into two groups: shade-tolerant species and shade-intolerant species. This classification is commonly used in forestry and horticulture. Shade-tolerant plants have lower photosynthetic rates and hence have lower growth rates than those of shade-intolerant species. Plant species become adapted to living in a certain kind of habitat, and in the process evolve a series of characteristics that prevent them from occupying other habitats. Grime (1966) suggests that light may be one of the major components direrting these adaptations. For example, eastern hemlock seedlings are shade-tolerant. They can survive in the forest understorey under very low light levels because they have a low photosynthetic rate.
Do the following statements agree with the information given in Reading Passage 3?
In boxes 27-33 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
关键词:evidence, support, photo-periodism
文章定位:第 2 段第 4句
题解:题目 :很多科学证据支持“光周期现象”。Photoperiodism 这 个名词的第一次出现是在第 2 段的第 4 句,考生应该很容易定位。这一句的前半句提出这个新名词,而后半句就紧接着指出,能证明这个现象的实验证据相当可观,并且下文紧跟了一个实例来证明。因此答案确定为 TRUE。题目中把原文的 experimental 换成了 scientific,这应该不会影响考生的判断。
关键词:bird, breed out of season
文章定位:第 2 段第 5 句
题解:题目 :一些种类的鸟受到鼓励,错季生育。这道题的出处紧连着上题,这有利于考生迅速定位题目。原文说,一些鸟类只是在人工增加日照长度的条件下,就能在隆冬季节生殖繁育。根据常识判断,隆冬季节肯定不是鸟类繁育的时间 ;句中的 be induced 意为“引诱,诱使”,等同于题目中的 be encouraged to do sth.。因此答案确定为 TRUE。
关键词:photoperiodism, geographic areas
题解:题目:“光周期现象”只是在某些地理区域才会发生。在解题时, 考生会觉得拿不准。在TRUE/FALSE/NOT GIVEN 这类题型中, 凡是考生第一感觉拿不准的题目,一般都是 NG。这也是一个做题技巧。本文说,根据对日照长度的反应不同,可以将植物分为三种 :short-day plants, long-day plants, day-neutral plants。 前两种都是需要光来提示的,而只有后者才不需要这种提示 : regardless of photoperiod/the day length。所以 Photoperiodism 受物种的限制,至于会不会受地域的限制,文中没有提到。故 选 NOT GIVEN。
关键词:desert annuals, long-day plants
文章定位:第 4 段最后一句
题解:题目:沙漠一年生植物是长日照植物的典型。考生很容易就会在原文中定位 desert annuals,这种植物的最大特点是 regard-less of the day length,这是 day-neutral 植物的典型特点;再者,关键词出现的句子是一个例证(for example),证明上句提到 的 day-neutral 植物具有进化优势。所以答案确定为 FALSE。
关键词:bamboos, flower
文章定位:第 5 段
题解:题目:竹子一生中开花数次。作者在第 5 段提到竹子是那种生育季节推迟的多年生植物,开一次花需要多年的等待,一次轮回需要 31 年,怎么可能开花数次呢? 故答案确定为 FALSE。
关键词:yet, Chusquea abietifolia’s seasonal rhythm
文章定位:第 5 段第 5 句
题解:题目 :科学家尚未确定何为 Chusquea abietifolia’s 竹子季节性生育规律的诱因。该题的答案相对来说容易确定,文章中只有第 5 段提到过这种竹子,但至今对它的生育规律的成因了解不多 :The climatic trigger for this flowering cycle is not yet known。因此答案确定为 TRUE。
关键词:Eastern hemlock, fast-growing plant
文章定位:文章最后两句
题解:题目 :( 加拿大 ) 铁杉是一种快速生长的植物。从文中考生了解到,( 加拿大 ) 铁杉是一种耐阴型植物,所以我们必须要知道耐阴型植物的生长特点。根据文章最后一段对植物的分类标准可得知,耐阴性植物光合作用速度低,因此生长缓慢 : shade-tolerant plants have lower photosynthetic rates and hence have lower growth rates than those of shade-intolerant species。在解答此题时,考生只需做一个简单的归类即可。

