IB Biology SL Evolution & Speciation Paper 1 & 2 Core idea ~10 min read

Evolution

Nothing in nature decides to change. A beetle does not choose to be brown and a giraffe does not want a longer neck. What really happens is much simpler: living things are already slightly different from one another, some of those differences help them stay alive long enough to breed, and those are the ones that get copied into the next generation.

📚 What you need to know

What “evolution” actually means

Species are not fixed. The animals and plants around you today are not the same as the ones that lived here a million years ago, and they will not be the same a million years from now. That slow change is evolution.

Definition — learn this wording Evolution = a change in the heritable characteristics of a population over generations

Three words in that sentence are doing all the work, and examiners give marks for all three.

If you only remember one sentence from this page, make it that one. A huge number of marks in this topic are just that definition, said carefully.

Heritable or not? The gamete test

Here is a quick way to check whether a change can be inherited. Ask yourself: did it change the DNA in the sperm or egg cells? If the answer is no, it stops with that individual.

✓ CAN BE PASSED ON

  • A mutation in a plant’s flower colour gene
  • A bacterium carrying a resistance allele
  • Fur thickness controlled by alleles
  • Beak shape set by inherited genes

✗ CANNOT BE PASSED ON

  • A plant that had its leaves eaten by a caterpillar
  • Muscles built up in the gym
  • A scar, a tan, a broken bone
  • A skill you learned, like reading
Watch out: this is where students lose easy marks. Writing “the giraffes stretched their necks and their babies were born with longer necks” describes Lamarck, not Darwin, and it will not be credited.

Where the variation comes from

Natural selection cannot invent anything. It can only work with differences that are already sitting in the population. So the first question is: where do those differences come from?

🤔 Why “random” matters so much

Mutations do not appear because an organism needs them. A rabbit living somewhere cold does not start producing thick-fur mutations. The mutations happen anyway, all the time, in every population — and the cold environment simply decides which of them do well. Mutation is random; selection is not. Say that in an exam and you have shown you understand the whole mechanism.

Natural selection, step by step

Darwin’s explanation is really a chain of five short statements. Learn it as a chain, because exam questions usually want you to write it out in order.

1
VARIATIONIndividuals differ, because of random mutation
2
PRESSUREToo many young, not enough food, space or mates
3
SURVIVALBetter-suited individuals are more likely to live
4
BREEDINGSurvivors reproduce and pass on their alleles
5
SHIFTThe helpful allele gets more common each generation
The population changes, the beetles do not Brown soil. Birds spot green beetles more easily, so fewer of them live long enough to breed. GENERATION 1 GENERATION 5 GENERATION 20 half green, half brown green is getting rare almost all brown now starting point birds keep eating green brown allele is common Not one beetle changed colour. The mix of beetles changed. That is the whole idea: selection acts on individuals, but evolution happens to the population.
Every beetle here keeps the colour it was born with for its whole life. The only thing that moves is how common each colour is — and that is exactly what “a change in heritable characteristics of a population” means.

Darwin and Lamarck: same question, different answers

Before Darwin, the French scientist Jean-Baptiste Lamarck had his own explanation for why species change. It sounds sensible until you ask how the information would actually get into the next generation.

Two explanations, only one survives the evidence Both try to explain long necks. Only one matches how inheritance really works. LAMARCK: STRETCH AND PASS IT ON Rejected: a stretched neck never reaches the DNA DARWIN: VARY, SURVIVE, PASS ON Accepted: only alleles get passed to offspring PARENTS OFFSPRING PARENTS OFFSPRING all stretch in life born with long necks some are born taller more are tall The difference: Lamarck starts with change, Darwin starts with variation. In Darwin’s version nobody grows a longer neck. The short-necked ones just leave fewer offspring.
The grey animal with the red cross is the one that does not get enough food and does not breed. Its alleles simply drop out. Nothing about it was “improved” during its life.
QuestionLamarck’s answer (rejected)Darwin’s answer (accepted)
Where does the new feature start?The individual develops it during its own lifeIt is already there as variation, caused by mutation
What causes it?Using a body part a lot, or not using itRandom mutation, then selection by the environment
How does it reach the offspring?The changed body part is somehow inheritedThrough alleles in the gametes
Why is it rejected or kept?Acquired characteristics do not change the DNA of gametesFits genetics, fossils, DNA evidence and observed change
A fair point for Lamarck: he was one of the first to argue that species change at all, which was a brave thing to say at the time. He got the mechanism wrong, not the big idea.

Why we still call it a “theory”

In everyday English a “theory” means a guess. In science it means almost the opposite: an explanation that has survived a huge amount of testing and pulls a lot of separate observations together.

Worked examples

WORKED EXAMPLE

Explain how a population of bacteria becomes resistant to an antibiotic. [4]

Step 1: start with variation, not with the drug Random mutation means a few bacteria already carry a resistance allele before the antibiotic is used. Step 2: name the selection pressure The antibiotic is the selection pressure. Non-resistant bacteria are killed. Step 3: survival and reproduction Resistant bacteria survive and reproduce, passing the resistance allele to their offspring. Step 4: state the population-level result Over generations, the frequency of the resistance allele rises until most of the population is resistant Never write “the bacteria became resistant because of the antibiotic” — that is Lamarck, and it scores zero.
WORKED EXAMPLE

A weightlifter trains for 20 years and builds huge muscles. Explain why her children are not born unusually muscular. [2]

Step 1: classify the change Muscle built by training is an acquired characteristic. It happens to body cells only. Step 2: link it to inheritance Training does not alter the DNA in her gametes, so nothing about it can be passed to her children. Only heritable changes, carried by alleles in gametes, can be inherited This is exactly why Lamarck’s model was dropped.
WORKED EXAMPLE

A beetle population on pale sand has 400 individuals: 320 pale and 80 dark. After a fire blackens the ground, 10 generations later the same population of 400 has 60 pale and 340 dark. Calculate the percentage of dark beetles before and after, and explain the change. [4]

Step 1: percentage before the fire 80 ÷ 400 × 100 = 20% Step 2: percentage after 10 generations 340 ÷ 400 × 100 = 85% Dark beetles rose from 20% to 85%, an increase of 65 percentage points Step 3: explain it properly Both colours were already present, so the variation existed before the fire. On blackened ground, dark beetles are harder for predators to see, so more of them survive to breed and pass on the dark allele. Its frequency rises each generation. Notice the fire did not create dark beetles — it only changed which ones did well.

💡 Exam tip

⚠ Common mix-up

Up next: Evidence for Evolution — how DNA sequences, selective breeding and the bones in your own arm all point to the same conclusion.

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