Skip to content

Biological Molecules

IGCSE Biology Topic 4 5:26 English narration · English + 中文 subtitles burned in

space play · ←/→ 5s · j/l 10s · f fullscreen · ,/. speed

Chapters

Transcript
Bread, meat, oil, your own muscles — all of them are built from just a handful of chemical elements. 面包、肉、油,还有你自己的肌肉——它们全都由少数几种化学元素构成。
And the large molecules in your food are not really large at all. 而食物里的大分子其实并不是真的"大"。
Each one is a long chain of small units joined together, like beads on a string. 每一个都是许多小单位连成的长链, 就像串在线上的珠子。
Learn the beads, and the whole topic becomes simple. 记住这些珠子,整个专题就变简单了。
Welcome to biological molecules. 欢迎来到生物分子。
The elements in food, the building blocks, the food tests, and the structure of D N A. 食物中的元素、组成单位、食物检验,还有DNA的结构。
Let's begin. 让我们开始吧。
Start with the chemical elements. 先看化学元素。
Carbohydrates and fats share the same three elements: carbon, hydrogen and oxygen. 碳水化合物和脂肪含有相同的三种元素:碳、氢和氧。
That is all. 就这三种。
Proteins have those three as well, but they carry one extra element — nitrogen. 蛋白质也有这三种,但它还多一种元素——氮。
Some proteins also contain sulfur. 有些蛋白质还含有硫。
So the one that stands out is nitrogen, and it belongs to protein alone. 所以特别的那一个是氮,它只属于蛋白质。
If a question asks which food group contains nitrogen, the answer is always protein. 如果题目问哪一类食物含有氮,答案永远是蛋白质。
Now the building blocks. 现在看组成单位。
Starch, glycogen and cellulose are all built from many glucose units — the same bead, joined in different ways. 淀粉、糖原和纤维素都由许多葡萄糖单位构成—— 同样的珠子,用不同的方式连接。
Proteins are built from amino acids; there are about twenty different kinds, joined in a long chain. 蛋白质由氨基酸构成;大约有二十种不同的氨基酸, 连成一条长链。
And fats are the odd one out, because they are not a single chain. 脂肪是特别的一个,因为它不是单一的链。
One fat molecule is made from three fatty acids joined to one glycerol. 一个脂肪分子由三个脂肪酸连到一个甘油上构成。
Remember that number: three fatty acids, one glycerol. 记住这个数字:三个脂肪酸,一个甘油。
Three molecules are built from the same glucose bead, so the exam wants you to separate them by job. 有三种分子由同样的葡萄糖珠子构成,所以考试要求你按功能把它们分开。
Starch and glycogen are energy stores — starch in plants, glycogen in animals. 淀粉和糖原是能量储存物——淀粉在植物里,糖原在动物里。
Cellulose is different: it is not a store at all. 纤维素不一样:它根本不是储存物。
Cellulose builds the plant cell wall and gives it strength. 纤维素构成植物细胞壁,给它强度。
So think about where each one is found: starch in a potato, glycogen in your liver and muscles, cellulose in every plant cell wall. 所以要想想每一种在哪里找到: 淀粉在马铃薯里,糖原在你的肝脏和肌肉里,纤维素在每一个植物细胞壁里。
Five food tests, and you need every colour change. 五个食物检验,每一个颜色变化你都要记住。
For starch, add iodine solution: orange-brown turns blue-black. 检验淀粉,加碘液:橙棕色变成蓝黑色。
For reducing sugars, such as glucose, add Benedict's solution and heat it: blue turns brick-red or orange. 检验还原糖,比如葡萄糖,加本尼迪特试剂并加热:蓝色变成砖红色或橙色。
For protein, add biuret solution: blue turns purple. 检验蛋白质,加双缩脲试剂:蓝色变成紫色。
For fats and oils, use the ethanol emulsion test: a cloudy white layer forms. 检验脂肪和油,用乙醇乳浊液试验: 形成白色浑浊层。
And for vitamin C, add it to blue D C P I P: the blue turns colourless. 检验维生素C,把它加到蓝色的DCPIP里:蓝色变成无色。
Two details cost marks every year. 有两个细节每年都让学生失分。
First: only the Benedict's test needs heat. 第一:只有本尼迪特试验需要加热。
All the others work cold, so if you write "heat it" for iodine or biuret, you lose the mark. 其他试验都是冷的做,所以如果你在碘液或双缩脲那里写"加热",就会失分。
Second: D C P I P goes colourless — it loses its colour. 第二:DCPIP变成无色——它失去颜色。
Every other test gains a new colour. 其他每个试验都是得到一种新颜色。
Losing colour and gaining colour are opposite things, and the examiner checks which one you wrote. 失去颜色和得到颜色是相反的,考官会检查你写的是哪一个。
Let's use them. 我们来用一用。
A student tests an unknown food. 一个学生检验一份未知的食物。
Iodine solution stays orange-brown. 碘液仍然是橙棕色。
Benedict's solution, after heating, turns brick-red. 本尼迪特试剂加热后变成砖红色。
Biuret solution turns purple. 双缩脲试剂变成紫色。
What is in the food? 这份食物里有什么?
Iodine staying orange-brown means no change, and no change is a negative result — so there is no starch. 碘液保持橙棕色意味着没有变化,而没有变化是阴性结果——所以没有淀粉。
Brick-red is a positive Benedict's result, so reducing sugar is present. 砖红色是本尼迪特阳性结果,所以有还原糖。
Purple is a positive biuret result, so protein is present. 紫色是双缩脲阳性结果,所以有蛋白质。
So the food contains reducing sugar and protein, but no starch. 所以这份食物含有还原糖和蛋白质,但没有淀粉。
Notice the important idea: no colour change is a real result. 注意这个重要的想法: 没有颜色变化也是一个真正的结果。
It tells you the substance is absent. 它告诉你那种物质不存在。
Finally, for the supplement paper: D N A. 最后,补充部分:DNA。
D N A is the genetic material — it carries the instructions for building and running an organism. DNA是遗传物质——它携带着建造和运行一个生物体的指令。
Learn four points. 要记住四点。
One: two strands are coiled together to form a double helix, like a twisted ladder. 第一:两条链盘绕在一起形成双螺旋,像一个扭曲的梯子。
Two: each strand carries chemicals called bases. 第二:每条链上带有叫做碱基的化学物质。
Three: bonds between pairs of bases hold the two strands together — those bases are the rungs of the ladder. 第三:成对碱基之间的化学键把两条链连在一起—— 这些碱基就是梯子的横档。
And four: the bases always pair in the same way. 第四:碱基总是以同样的方式配对。
A pairs with T, and C pairs with G. A和T配对,C和G配对。
Here is why this pairing rule is useful. 这就是配对规则有用的原因。
If you know the bases on one strand, you can always work out the other. 如果你知道一条链上的碱基,你总能推出另一条。
Take a strand reading A, T, G, C, A. 假设一条链读作A、T、G、C、A。
Work along the strand one base at a time. 沿着这条链一个碱基一个碱基地做。
A pairs with T. A和T配对。
T pairs with A. T和A配对。
G pairs with C. G和C配对。
C pairs with G. C和G配对。
A pairs with T. A和T配对。
So the other strand reads T, A, C, G, T. 所以另一条链读作T、A、C、G、T。
Check your answer by looking down each pair: every one should be A with T, or C with G. 检查你的答案,看每一对: 每一对都应该是A对T,或者C对G。
If you ever see A opposite G, you have made a mistake. 如果你看到A对着G,那就是做错了。
Three marks to lock in. 锁住三个分。
First: carbohydrates and fats are carbon, hydrogen and oxygen; nitrogen belongs to protein alone. 第一:碳水化合物和脂肪是碳、氢、氧;氮只属于蛋白质。
Second: only Benedict's needs heat, and only D C P I P goes colourless. 第二:只有本尼迪特试验需要加热,也只有DCPIP变成无色。
Third: the bases pair only A with T and C with G, so one strand always tells you the other. 第三:碱基只按A对T、C对G配对,所以一条链总能告诉你另一条。
Master these, and this topic is yours. 掌握这些,这个专题就是你的了。

Log in or create account

IGCSE, A-Level & AP