Photosynthesis | 光合作用

📚 Photosynthesis | 光合作用

Photosynthesis is one of the most important biological processes on Earth. It is the method by which green plants, algae and some bacteria convert light energy into chemical energy, producing glucose and oxygen from carbon dioxide and water. This process is fundamental to life, as it provides the primary source of organic matter and atmospheric oxygen for most living organisms.

光合作用是地球上最重要的生物过程之一。绿色植物、藻类和一些细菌利用光能,将二氧化碳和水转化为葡萄糖和氧气,同时储存化学能。这一过程是生命的基础,为绝大多数生物提供了有机物和大气中的氧气。


1. Definition and Importance | 定义与重要性

Photosynthesis is an endothermic reaction that takes place in the chloroplasts of plant cells. The overall process can be summarised by the chemical equation:

6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

This reaction requires energy from sunlight, which is absorbed by chlorophyll. The importance of photosynthesis cannot be overestimated: it produces glucose, which is used for respiration, growth and storage; it also releases oxygen, which is vital for aerobic respiration in animals and plants.

光合作用是一个吸热反应,发生在植物细胞的叶绿体中。整个过程可用化学方程式概括:

6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

该反应需要来自太阳光的能量,并由叶绿素吸收。光合作用的重要性不可估量:它产生了葡萄糖,用于呼吸、生长和储存;同时还释放出氧气,这对动物和植物的有氧呼吸至关重要。


2. Word Equation and Chemical Equation | 文字方程式和化学方程式

In the Edexcel IGCSE specification, you are expected to recall both the word equation and the balanced chemical equation for photosynthesis.

Word equation: carbon dioxide + water → glucose + oxygen (with the help of light energy and chlorophyll)

Carbon dioxide + Water → Glucose + Oxygen

Chemical equation: 6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

The reaction is endothermic, meaning it absorbs energy from the surroundings – specifically light energy.

在Edexcel IGCSE大纲中,你需要记住光合作用的文字方程式和配平的化学方程式。

文字方程式:二氧化碳 + 水 → 葡萄糖 + 氧气(需要光能和叶绿素)

二氧化碳 + 水 → 葡萄糖 + 氧气

化学方程式:6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

该反应是吸热反应,意味着它从环境中吸收能量——具体地说是光能。


3. The Role of Light | 光的作用

Light is the energy source that drives photosynthesis. During the light-dependent reactions, light energy is absorbed by chlorophyll and used to split water molecules into hydrogen and oxygen. This process is called photolysis. The hydrogen is combined with carbon dioxide to form glucose in the light-independent reactions.

In the IGCSE exam, you need to understand that if there is no light, photosynthesis stops, and respiration becomes the only gas exchange process.

光是驱动光合作用的能量来源。在光反应阶段,叶绿素吸收光能,用于将水分子分解为氢和氧。这一过程称为光解。氢随后与二氧化碳结合,在暗反应阶段生成葡萄糖。

在IGCSE考试中,你需要理解:如果没有光照,光合作用停止,呼吸作用成为唯一的气体交换过程。


4. Chlorophyll and Leaf Structure | 叶绿素与叶片结构

Chlorophyll is a green pigment found in chloroplasts, mainly in the palisade mesophyll cells of leaves. It absorbs light most efficiently in the red and blue-violet parts of the spectrum, and reflects green light, which is why leaves appear green.

Leaves are adapted for photosynthesis in several ways:

  • Large surface area to capture more light – 表面积大,以捕获更多光线。
  • Thin structure so carbon dioxide can diffuse quickly – 叶片薄,使二氧化碳快速扩散。
  • Chloroplasts in palisade cells near the upper surface – 栅栏细胞靠近上表面,含有叶绿体。
  • Stomata allow gas exchange – 气孔便于气体交换。
  • Xylem and phloem transport water and glucose – 木质部和韧皮部运输水分和葡萄糖。

叶绿素是位于叶绿体中的绿色色素,主要存在于叶片的栅栏叶肉细胞中。它能最有效地吸收光谱中的红光和蓝紫光,并反射绿光,因此叶片呈现绿色。

叶片在结构上适应光合作用:

  • 表面积大,以捕获更多光线。
  • 叶片薄,使二氧化碳快速扩散。
  • 栅栏细胞靠近上表面,含有叶绿体。
  • 气孔便于气体交换。
  • 木质部和韧皮部运输水分和葡萄糖。

5. The Factors Affecting Photosynthesis | 影响光合作用的因素

The rate of photosynthesis is affected by several environmental factors:

  • Light intensity – increases rate until saturation point – 光照强度:提高速率直至饱和点。
  • Carbon dioxide concentration – often a limiting factor in air – 二氧化碳浓度:空气中的常见限制因子。
  • Temperature – affects enzyme activity – 温度:影响酶活性。
  • Water availability – a lack of water can close stomata – 水分供应:缺水会导致气孔关闭。

光合作用速率受多个环境因素影响:

  • 光照强度:提高速率直至饱和点。
  • 二氧化碳浓度:空气中的常见限制因子。
  • 温度:影响酶活性。
  • 水分供应:缺水会导致气孔关闭。

6. Limiting Factors | 限制因子

A limiting factor is a condition that, when in short supply, restricts the rate of reaction. In photosynthesis, the main limiting factors are light intensity, carbon dioxide concentration and temperature. At different times, any one of these may be the limiting factor.

For example, at night light is the limiting factor; in winter temperature may be; in bright daylight in a closed greenhouse, carbon dioxide might be limiting.

限制因子是指供应不足时限制反应速率的环境条件。光合作用的三大限制因子是光照强度、二氧化碳浓度和温度。在不同时段,其中任何一个都可能成为限制因子。

例如,夜间光照是限制因子;冬季温度可能是限制因子;在密闭温室中,明亮白天时二氧化碳可能是限制因子。


7. Investigating Photosynthesis | 探究光合作用

Common experiments to measure photosynthesis include:

  • Counting bubbles produced by an aquatic plant like Elodea – 用金鱼藻等水生植物计数气泡释放速率。
  • Collecting the gas and testing it with a glowing splint – it relights, showing oxygen – 收集气体并用带火星的木条测试,复燃证明是氧气。
  • Using iodide solution to test for starch after destarching a plant – 对植物脱淀粉后,用碘液检测淀粉。
  • Varying one factor at a time to measure its effect – 每次改变一个因素,测量其影响。

测量光合作用的常见实验包括:

  • 用金鱼藻等水生植物计数气泡释放速率。
  • 收集气体并用带火星的木条测试,复燃证明是氧气。
  • 对植物脱淀粉后,用碘液检测淀粉。
  • 每次改变一个因素,测量其影响。

8. Uses of Glucose | 葡萄糖的用途

Glucose produced in photosynthesis is used by plants in several ways:

  • For respiration – to release energy – 用于呼吸作用,释放能量。
  • Converted to starch – stored for later use – 转变为淀粉,储存备用。
  • Converted to cellulose – used in cell walls – 转变为纤维素,构成细胞壁。
  • Used to make lipids – stored as oils/fats – 用于合成脂质,以油/脂肪形式储存。
  • Used to build amino acids, combined with nitrate ions – 与硝酸根离子结合,合成氨基酸。

光合作用产生的葡萄糖在植物体内有多种用途:

  • 用于呼吸作用,释放能量。
  • 转变为淀粉,储存备用。
  • 转变为纤维素,构成细胞壁。
  • 用于合成脂质,以油/脂肪形式储存。
  • 与硝酸根离子结合,合成氨基酸。

9. Photosynthesis and Respiration Relationship | 光合作用与呼吸作用的关系

Photosynthesis and respiration are complementary processes. Photosynthesis removes carbon dioxide and releases oxygen; respiration removes oxygen and releases carbon dioxide. Photosynthesis stores energy in glucose, while respiration releases energy from glucose. Note that respiration occurs continuously in all living cells, while photosynthesis occurs only in light.

光合作用与呼吸作用是互补的过程。光合作用吸收二氧化碳并释放氧气;呼吸作用吸收氧气并释放二氧化碳。光合作用将能量储存在葡萄糖中,而呼吸作用从葡萄糖中释放能量。注意:呼吸作用持续存在于所有活细胞中,而光合作用只在有光时发生。


10. Adaptations of Leaves | 叶片的适应性

Leaf adaptations for efficient photosynthesis include:

  • Thin and flat shape to create a large surface area – 薄而扁平,增大表面积。
  • Palisade cells are packed with chloroplasts – 栅栏细胞富含叶绿体。
  • Transparent upper epidermis allows light to pass – 透明的上表皮让光线透入。
  • Stomata on lower surface regulate gas exchange – 下表皮气孔调节气体交换。
  • Vascular bundles (veins) transport water and products – 维管束(叶脉)运输水分和产物。

叶片高效光合作用的适应性特征包括:

  • 薄而扁平,增大表面积。
  • 栅栏细胞富含叶绿体。
  • 透明的上表皮让光线透入。
  • 下表皮气孔调节气体交换。
  • 维管束(叶脉)运输水分和产物。

11. Mineral Requirements in Plants | 植物的矿质需求

Plants need certain mineral ions for healthy growth. Magnesium is a central component of chlorophyll, so magnesium deficiency causes yellowing (chlorosis). Nitrogen is needed for amino acids and proteins, and is absorbed as nitrate ions. Nitrates promote leaf growth.

植物需要某些矿物质离子才能健康生长。镁是叶绿素的关键组成成分,缺镁会导致叶片黄化(失绿症)。氮是合成氨基酸和蛋白质所必需的,以硝酸根离子形式吸收。硝酸盐促进叶片生长。


12. Experimental Examples | 实验实例

One classic experiment to investigate the effect of light intensity uses a lamp placed at different distances from a beaker containing an aquatic plant (Elodea). As the lamp is moved closer, the light intensity increases (inverse square law), and the rate of photosynthesis — measured by counting oxygen bubbles per minute — increases.

To ensure a fair test, keep temperature and carbon dioxide concentration constant (e.g., add a pinch of sodium hydrogencarbonate to provide CO₂).

一个经典实验探究光强的影响:将一盏灯放在离含水生植物(金鱼藻)的烧杯不同距离处。随着灯移近,光强增大(平方反比定律),光合作用速率——以每分钟氧气气泡数表示——增加。

为了确保公平试验,要控制温度和二氧化碳浓度恒定(例如,加入少量碳酸氢钠提供CO₂)。

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