📚 Photosynthesis | 光合作用
Photosynthesis is the process by which green plants, algae, and some bacteria convert light energy into chemical energy. It is one of the most important biological processes on Earth, because it produces the oxygen we breathe and the glucose that sustains almost all food chains. In the Edexcel IGCSE Science syllabus, photosynthesis is a core topic that appears frequently in exams, often through questions on limiting factors, leaf structure, and experimental design.
光合作用是绿色植物、藻类和某些细菌将光能转化为化学能的过程。它是地球上最重要的生物过程之一,因为它产生了我们呼吸的氧气,以及维持几乎所有食物链的葡萄糖。在 Edexcel IGCSE 科学考纲中,光合作用是核心主题,经常出现在考试中,尤其是通过限制因素、叶片结构和实验设计相关的问题来考查。
1. What Is Photosynthesis? | 什么是光合作用?
Photosynthesis is an endothermic reaction in which energy from sunlight is absorbed by chlorophyll and used to convert carbon dioxide and water into glucose and oxygen. The glucose can be used immediately for respiration or stored as starch for later use.
光合作用是一个吸热反应,阳光中的能量被叶绿素吸收,用于将二氧化碳和水转化为葡萄糖和氧气。葡萄糖可以立即用于呼吸作用,也可以储存为淀粉以备后用。
- Endothermic: the reaction takes in energy from the surroundings / 吸热:反应从周围环境吸收能量
- Location: chloroplasts, which contain the green pigment chlorophyll / 场所:叶绿体,含有绿色色素叶绿素
- Overall purpose: produce glucose for respiration, growth, and storage / 总体目的:产生葡萄糖,供呼吸、生长和储存使用
2. The Word Equation and Chemical Equation | 文字方程式与化学方程式
The word equation for photosynthesis is:
carbon dioxide + water → glucose + oxygen
二氧化碳 + 水 → 葡萄糖 + 氧气
The balanced chemical equation is:
6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂
This equation shows that six molecules of carbon dioxide react with six molecules of water to produce one molecule of glucose and six molecules of oxygen. In the exam, you must be able to write both equations from memory and state clearly that the reaction is endothermic.
这个方程式表明六分子二氧化碳与六分子水反应,生成一分子葡萄糖和六分子氧气。在考试中,你必须能够凭记忆写出这两个方程式,并清楚指出该反应是吸热的。
3. The Structure of the Leaf | 叶片的结构
The leaf is the main photosynthetic organ of a plant, and its structure is beautifully adapted to capture light and exchange gases efficiently.
叶片是植物主要的光合作用器官,其结构非常巧妙地适应了捕获光高效气体交换的需要。
| Part / 部分 | Adaptation / 适应特征 |
| Epidermis / 表皮 | Thin and transparent; allows light to reach inner cells / 薄而透明;让光到达内部细胞 |
| Palisade mesophyll / 栅栏组织 | Tall, tightly packed cells full of chloroplasts, located near the upper surface / 高而紧密排列的细胞,富含叶绿体,靠近上表面 |
| Spongy mesophyll / 海绵组织 | Air spaces that allow rapid diffusion of CO₂ and O₂ / 气隙,允许 CO₂ 和 O₂ 快速扩散 |
| Stomata / 气孔 | Pores, mainly on the lower epidermis, that let CO₂ enter and O₂ leave / 主要位于下表皮的孔隙,让 CO₂ 进入、O₂ 排出 |
| Xylem and phloem / 木质部和韧皮部 | Transport water (xylem) and dissolved sugars (phloem) / 运输水分(木质部)和溶解的糖类(韧皮部) |
4. Limiting Factors | 限制因素
A limiting factor is something that, when in short supply, directly slows down the rate of photosynthesis. The three main limiting factors are light intensity, carbon dioxide concentration, and temperature.
限制因素是指当供应不足时直接降低光合作用速率的因素。三个主要的限制因素是光照强度、二氧化碳浓度和温度。
If one factor is increased while the other two remain constant, the rate of photosynthesis will increase, but only up to a point. Once another factor becomes the limiting factor, increasing the first factor has no further effect. This idea is often tested with graphs, so you must be ready to explain the shape of the curve.
如果增加其中一个因素而另外两个保持不变,光合作用速率会增加,但只会增加到某个点。一旦另一个因素成为限制因素,增加第一个因素就不再有任何效果。这一概念经常结合图形来考查,所以你必须能够解释曲线的形状。
5. Light Intensity and Rate | 光照强度与速率
As light intensity increases, the rate of photosynthesis first increases proportionally, because more light provides more energy for the reaction. However, beyond a certain point the rate levels off. At this stage, light is no longer the limiting factor; instead, carbon dioxide concentration or temperature is limiting.
随着光照强度增加,光合作用速率起初按比例增加,因为更多的光为反应提供了更多能量。然而,超过某一点后速率趋于平稳。在这个阶段,光不再是限制因素;此时二氧化碳浓度或温度成为限制因素。
The inverse square law applies to light: if you double the distance between a lamp and a plant, the light intensity falls to one quarter. In experiments, you must therefore control the distance carefully and ideally use a light meter.
平方反比定律适用于光:如果你将灯与植物之间的距离加倍,光照强度会降至原来的四分之一。因此在实验中,你必须仔细控制距离,最好使用照度计。
light intensity ∝ 1 ÷ distance² / 光照强度 ∝ 1 ÷ 距离²
6. Carbon Dioxide Concentration | 二氧化碳浓度
Carbon dioxide is one of the raw materials of photosynthesis, so increasing its concentration increases the rate up to a plateau. In the exam, you may be asked to read such a graph and identify which factor is limiting at different parts of the curve.
二氧化碳是光合作用的原料之一,因此增加其浓度会使速率增加到某个平台。在考试中,你可能会被要求读取这样的图形,并识别曲线不同部分哪个因素是限制因素。
At very low CO₂ concentrations, the rate is low because there is not enough carbon to build glucose. At high concentrations, the rate stops rising because light or temperature is now limiting. For this reason, commercial greenhouses often burn paraffin to raise both CO₂ concentration and temperature.
在极低的二氧化碳浓度下,速率很低,因为没有足够的碳来合成葡萄糖。在高浓度下,速率不再上升,因为光或温度现在成为限制因素。因此,商业温室常燃烧石蜡,同时提高二氧化碳浓度和温度。
7. Temperature | 温度
Photosynthesis is controlled by enzymes, such as RuBisCO. As temperature increases, the rate of photosynthesis rises because particles gain kinetic energy and enzyme–substrate collisions become more frequent. The optimum temperature for most plant enzymes is roughly 25–35 °C.
光合作用由酶控制,例如 RuBisCO。随着温度升高,光合作用速率上升,因为颗粒获得更多动能,酶与底物的碰撞更加频繁。大多数植物酶的最适温度约为 25–35 °C。
Above the optimum, the rate falls sharply because enzymes begin to denature. Denaturation changes the shape of the active site, so the enzyme can no longer bind its substrate. This explains why plants grow poorly in extreme heat.
超过最适温度后,速率急剧下降,因为酶开始变性。变性改变了活性部位的形状,因此酶无法再与底物结合。这解释了为什么植物在极端高温下生长不良。
8. Investigating Photosynthesis | 研究光合作用
Several classic experiments measure the rate of photosynthesis, and you should know their methods, variables, and limitations for the exam.
有几种经典实验可以测量光合作用速率,你应该了解它们的方法、变量和局限性,以便应对考试。
- Counting bubbles from an aquatic plant such as Elodea: the number of bubbles per minute gives a rough measure of the rate of oxygen production / 计数水生植物(如伊乐藻)产生的气泡:每分钟气泡数粗略衡量产氧速率
- Using a gas syringe to collect oxygen more accurately from pondweed / 使用气体注射器更准确地收集池塘藻类产生的氧气
- Testing collected gas with a glowing splint: if it relights, the gas is oxygen / 用带火星的木条检验收集到的气体:如果木条复燃,说明该气体是氧气
- Using hydrogencarbonate indicator to measure changes in CO₂ concentration around leaves / 使用碳酸氢盐指示剂测量叶片周围二氧化碳浓度的变化
In any experiment, keep all other variables constant: distance from the light source, temperature, and carbon dioxide concentration (for example, by using a sodium hydrogencarbonate solution). This ensures a fair test.
在任何实验中,都要保持所有其他变量恒定:光源距离、温度以及二氧化碳浓度(例如使用碳酸氢钠溶液)。这样才能确保实验公平。
9. Uses of Glucose | 葡萄糖的用途
Glucose produced by photosynthesis is used by the plant in several important ways:
光合作用产生的葡萄糖被植物以多种重要方式利用:
- Respiration: glucose is broken down to release energy for cellular processes / 呼吸作用:葡萄糖被分解以释放能量,供细胞活动使用
- Cellulose: glucose is converted into cellulose, a structural component of cell walls / 纤维素:葡萄糖转化为纤维素,构成细胞壁的结构成分
- Starch: glucose is stored as starch in roots, stems, and leaves for later use / 淀粉:葡萄糖以淀粉形式储存于根、茎和叶中,以备后用
- Proteins: glucose combines with nitrate ions to form amino acids, which are then built into proteins / 蛋白质:葡萄糖与硝酸根离子结合形成氨基酸,再进一步合成蛋白质
- Lipids: glucose is converted into fats and oils for energy storage, especially in seeds / 脂质:葡萄糖转化为脂肪和油类,用于储能,尤其在种子中
This is why plants need nitrate ions from the soil: without them, plants cannot make proteins, and their growth becomes stunted.
这就是植物需要土壤中硝酸根离子的原因:没有它们,植物无法制造蛋白质,生长就会受阻。
10. Mineral Requirements for Healthy Growth | 健康生长所需的矿物质
Plants absorb mineral ions from the soil through their roots. Two minerals are especially important for photosynthesis and growth:
植物通过根部从土壤中吸收矿物质离子。有两种矿物质对光合作用和生长尤其重要:
- Nitrate ions (NO₃⁻): needed to make amino acids, proteins, and DNA. Deficiency causes stunted growth and yellowing of older leaves / 硝酸根离子(NO₃⁻):制造氨基酸、蛋白质和 DNA 所需。缺乏会导致生长受阻和老叶变黄
- Magnesium ions (Mg²⁺): needed to make chlorophyll. Deficiency causes yellowing of leaves, known as chlorosis / 镁离子(Mg²⁺):制造叶绿素所需。缺乏会导致叶片变黄,即萎黄病
In the exam, you may be asked to compare a healthy plant with one grown in a solution lacking a particular mineral, and to suggest a treatment such as adding fertiliser.
在考试中,你可能会被要求比较健康植株与在缺少某种矿物质的溶液中生长的植株,并提出补救措施,例如添加肥料。
11. Photosynthesis and the Carbon Cycle | 光合作用与碳循环
Photosynthesis is a key stage in the carbon cycle. Plants remove carbon dioxide from the atmosphere during photosynthesis, and this carbon is then passed along food chains when animals eat the plants.
光合作用是碳循环中的关键阶段。植物在光合作用过程中从大气中移除二氧化碳,当动物取食植物时,这些碳便沿着食物链传递。
When organisms respire, when decomposers break down dead matter, and when fossil fuels are burned, carbon dioxide is returned to the atmosphere. The balance between these processes determines the level of atmospheric CO₂.
当生物呼吸、分解者分解死亡物质以及化石燃料燃烧时,二氧化碳会返回到大气中。这些过程之间的平衡决定了大气中二氧化碳的水平。
Deforestation reduces the total amount of photosynthesis on Earth, which is one reason why cutting down forests contributes to climate change.
森林砍伐减少了地球上光合作用的总量,这就是为什么砍伐森林会导致气候变化的原因之一。
12. Common Exam Tips | 常见考试技巧
Finally, here are some quick tips to help you maximise your marks on this topic:
最后,这里有一些快速技巧,帮助你在该主题上获得更高分数:
- Always quote units when writing rates, such as bubbles per minute or cm³ per hour / 写出速率时始终带上单位,例如每分钟气泡数或每小时立方厘米
- When describing a graph, mention both the initial trend and the plateau explicitly / 描述图形时,明确说明初始趋势和平台期
- Use the term “limiting factor” correctly: only the factor in shortest supply limits the rate / 正确使用「限制因素」一词:只有供应最短缺的因素才会限制速率
- Remember that photosynthesis is endothermic, so it absorbs energy from the surroundings / 记住光合作用是吸热的,因此它从周围环境吸收能量
- Practise writing the balanced symbol equation with correct subscripts until it becomes automatic / 反复练习书写带正确下标的符号方程式,直到能够自动写出
By mastering the equations, the limiting factors, the leaf structure, and the experimental methods, you will be well prepared for any photosynthesis question on the Edexcel IGCSE Science paper.
通过掌握方程式、限制因素、叶片结构和实验方法,你将能够充分应对 Edexcel IGCSE 科学试卷中的任何光合作用问题。
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