IB Biology HL Natural Selection Paper 1 & 2 ~13 min read

Selection Pressures: Skills

Guppies are the reason we can say all of this with confidence rather than just telling a good story. In a greenhouse full of ponds, one scientist changed the predators and watched a population change colour within months.

📚 What you need to know

Why guppies are such a good model

Guppies are small fish found in mountain forest streams in Trinidad and Tobago. They breed fast, which means you can watch several generations in a single year rather than waiting a human lifetime.

They show clear variation in colour and pattern, and clear sexual dimorphism — males tend to be brightly coloured while females are dull. The spots on the males give them camouflage from predators, because the spots mimic the gravel of the streambed they live over. Some streambeds are fine and sandy, others are coarse and pebbly, and some streams offer far more hiding places than others.

So the same feature, a male’s spots, is being pulled in two directions. Bright spots attract females. Bright spots also attract pike cichlids.

The same fish, two different pressures Male guppy colour is a compromise between being seen and being eaten LOW PREDATION HIGH PREDATION more spots, bigger, brighter sexual selection is winning fewer spots, small and dull natural selection is winningSpot size also tends to match the gravel size Coarse gravel favoured larger spots and fine gravel favoured smaller ones, wherever predators were present
Both fish carry alleles for spots. The difference is which alleles survived long enough to be passed on.

Endler’s experiments

In the 1970s John Endler noticed that guppy colour patterns in Trinidad changed with predation pressure. He then ran both laboratory and field research to investigate how natural and sexual selection shape guppy evolution.

His hypotheses were:

The laboratory experiment

🧩 What he actually did

  1. Used a greenhouse to recreate a tropical environment.
  2. Let guppies breed freely in large tanks for six months with no predation, producing a population with a wide range of spot sizes and numbers.
  3. Counted and measured the spots on every guppy — this is the baseline data.
  4. Randomly assigned the guppies to ten ponds: five with coarse gravel, five with fine gravel.
  5. Set three levels of predation across those ponds (see the table below).
  6. Ran the experiment for five months after the predators went in, then counted and measured the spots again.
  7. Ran it for a further nine months and collected data a third time.
Predation levelExample predatorFine gravel pondsCoarse gravel ponds
Noneno predator added11
Weak predatorkillifish22
Dangerous predatorpike cichlid22
Look at the shape of that design for a moment. Two variables are changed on purpose (gravel and predator), everything else — temperature, light, food, starting population — is kept the same, and every combination is repeated. That is what a well designed experiment looks like, and describing it is worth marks in its own right.

What he predicted

What he found

The overall trend to remember More predators means fewer and duller spots on the males that survive no predation low predation high predation mean spots per malesexual selection dominates here natural selection dominates hereThis is the shape of the trend, not a copy of any one data set — check the axes on the graph you are given
If a question hands you an unfamiliar guppy graph, find the predation axis first. The rest of the interpretation follows from it.

The field experiment

Endler also took a number of dull male guppies from an area of high predation and moved them to an area of low predation. He left them for 15 guppy generations — about two years — and then went back to look.

The males he found had more colourful patterning than the ones he had released. With the strong predation pressure removed, sexual selection was free to push colour upwards.

Interpreting the results

Put the lab and field work together and the conclusion is not a tidy one-line answer. Evolution in these guppy populations is a dynamic process of both natural and sexual selection acting at the same time.

PressureWhere it comes fromEffect on male colour
Natural selectionCompetition for food and the need to avoid predators. Predators spot brightly coloured males more easilySelects for less colourful, less spotted males
Sexual selectionFemale choice. Bright, big spots give a reproductive advantageSelects for more colourful, more spotted males
Net resultDepends on which pressure is stronger in that streamA trade-off: colour settles at the level that maximises offspring
The honest version. In areas with high predation, brightly coloured males are less likely to survive regardless of their reproductive advantage. Being attractive is no use if you are eaten before you breed.

Reading the graphs in an exam

Endler’s data is usually printed as a block of small graphs, one for each spot colour, and it looks intimidating. It is not.

🧩 A method for any unfamiliar graph

  1. Read both axes and the key before you look at a single bar. Find out what the categories on the x-axis mean.
  2. Find the summary panel if there is one — a total, or an “all colours” graph. That is where the overall trend lives.
  3. Compare only two bars at a time, and say which is higher in words: “males in high predation ponds had fewer spots than males with no predation”.
  4. Check the error bars. If they overlap, the difference may not be significant, and saying so earns credit.
  5. Link the pattern back to the biology: predation up, spots down, because camouflaged males survive to breed.

Worked examples

WE 1

Predict the effect of removing predators

A stream population of guppies has small, dull spots. The predatory fish are removed from the stream. Predict and explain what will happen to the males over the next 20 generations. (3 marks)

Prediction Males will become more colourful, with more and brighter spots. Explanation 1: pressure removed Without predators, being conspicuous no longer reduces survival, so natural selection against bright colour is weak. Explanation 2: pressure remaining Females still prefer brighter males, so those males mate more, pass on the alleles for bright spots, and the frequency of those alleles increases. Remove one pull and the trait moves towards the other this is exactly what Endler’s field transfer showed after 15 guppy generations
WE 2

Explain a substrate result

In ponds containing predators, guppies over coarse gravel developed larger spots than guppies over fine gravel. Explain this result. (3 marks)

Point 1: what the spots do Spots provide camouflage by mimicking the gravel of the streambed. Point 2: matching the background Over coarse gravel, males with larger spots blend in better, so they are less likely to be seen and eaten. Point 3: inheritance Those males survive to reproduce and pass on the alleles for larger spots, so mean spot size in the pond increases. Spot size mimics gravel size wherever predators are present add the contrast for a stronger answer: with no predators the pattern reversed, because standing out attracts females
WE 3

Evaluate the experimental design

Suggest two reasons why Endler used ten ponds rather than two. (2 marks)

Reason 1: repeats Several ponds at each combination give replicates, so a result caused by chance in one pond does not look like a real effect. Reason 2: two variables at once Ten ponds allow both gravel type and predation level to be tested in every combination, so their separate effects can be identified. Replicates give reliability; combinations separate the variables a third mark in longer questions: ponds with no predators act as a control

💡 Exam tips

⚠ Common mistakes

Up next: Gene Pools. So far we have talked about individuals surviving. Now we zoom out to the level evolution actually happens at — the whole set of alleles owned by a population.

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