IB ESS SL Topic 2 — Ecology Paper 1 & 2 Core skill ~8 min read

Classifying Species and Using Keys

There are millions of species on Earth and no ecologist can hold them all in their head. Classification is the filing system that makes that possible, and a dichotomous key is the tool that turns “some sort of beetle, I think” into an actual name. Both are easy marks if you know the rules.

📚 What you need to know

Why bother classifying at all?

Grouping species is not just tidiness. Once you know an organism sits inside a group, you can predict things about it that you never observed. Find a new beetle and you already know it has six legs, an external skeleton and a life cycle with distinct stages — because that is what beetles do.

Classification also lets scientists in different countries talk about the same organism without confusion. “Robin” means a completely different bird in Britain and in North America. Erithacus rubecula means one bird everywhere.

The ranks, from broad to narrow

The eight ranks of classification each bar sits inside the wider bar above it DOMAIN KINGDOM PHYLUM CLASS ORDER FAMILY GENUS SPECIES GENERAL SPECIFIC many organisms, not much alike few organisms, very much alike Going down the list narrows the group and raises the similarity. Remember the order with: Dear King Philip Came Over For Good Soup.
Only the last two ranks are used in an organism’s scientific name, but the ones above still carry information about how it lives.

Take humans as the example everyone remembers. We sit in the genus Homo and the species sapiens, giving Homo sapiens. A genus usually holds several species; ours is unusual because every other member of Homo, such as Homo neanderthalensis, is extinct.

Compare that with the genus Canis, which holds the grey wolf, the domestic dog, the coyote, the golden jackal and several more. They look different and live in different places, but their shared ancestry and shared body plan put them in one genus.

Naming rules that carry marks

Binomial naming Genus + speciesPanthera leo or Panthera leo

🧩 Getting a scientific name right

  1. Genus first, and it always starts with a capital letter.
  2. Species second, and it never gets a capital letter, even if it is named after a person or place.
  3. Italics when typed, underlined when handwritten. In an exam, underline it.
  4. After the first mention you may shorten the genus to its initial: P. leo.
Underlining costs you one second and can pick up a mark. If you write a scientific name in a Paper 2 answer, underline both words — it is the cheapest mark on the paper.

Three ways to identify an organism

Tool How it works Where it struggles
Reference collections Compare your specimen with named, preserved specimens already identified by experts. Phone apps do the same job with photo databases. Only as good as the collection and the expert using it.
DNA surveys Compare the DNA sequence of the specimen against sequences held in large databases. Needs a laboratory, money and time, so it is not a field method.
Dichotomous keys Answer a series of two-way questions about visible features until you reach a name. Covers a limited list of species and uses appearance only.

DNA surveys are the precise option, and they matter most for species that look almost identical — two butterflies that only a specialist could separate by eye may be clearly different in their DNA. But for a student with a tray of pond animals and twenty minutes, a key is the right tool.

Working through a dichotomous key

“Dichotomous” just means “splitting into two”. At each step you get two statements. Pick the one that fits, and it either names your organism or sends you to another pair.

A dichotomous key for four seashore animals every question has exactly two answers 1 Has a hard outer shell? 2 Shell in two halves? 3 Has large pincers? YES NO YES NO YES NO MUSSEL PERIWINKLE SHORE CRAB SANDHOPPER Four species, three questions, no guessing. Follow one branch at a time and never skip ahead to the answer you expect.
Written keys look like a table rather than a tree, but they do exactly the same job — the numbers replace the branches.

The same key written the way it appears in an exam:

Step Feature Result
1a Has a hard outer shell Go to 2
1b Has no hard outer shell Go to 3
2a Shell is in two hinged halves Mussel
2b Shell is a single coiled piece Periwinkle
3a Front legs end in large pincers Shore crab
3b No large pincers, body flattened side to side Sandhopper
Read both statements before choosing. Students lose marks by reading only 3a, deciding “close enough” and stopping. The two statements are written as opposites on purpose, so one of them will fit properly.

Where keys let you down

Worked examples

WORKED EXAMPLE

A student writes the lion’s scientific name as “panthera Leo”. Rewrite it correctly and state the genus.

Step 1: check the capital letters Genus takes the capital, species does not — so both are the wrong way round here. Step 2: rewrite and underline Panthera leo Step 3: name the genus The genus is Panthera, which also holds the tiger and the leopard. In a written exam, underline both words instead of italicising them.
WORKED EXAMPLE

Use the key above to identify this animal, showing the steps you took.

Found in a rock pool: a small animal with no shell, a body flattened from side to side, and no pincers on its front legs.

Step 1 No hard outer shell, so 1b → go to 3 Step 2 No large pincers, so 3b Step 3: read off the name Sandhopper Write the route as 1b then 3b. Examiners give credit for the steps, not only the name.
WORKED EXAMPLE

Researchers cannot tell two very similar moths apart by eye. Suggest a better tool and justify it.

Choose the tool A DNA survey. Justify it Closely related species can look almost the same but still have clearly different DNA sequences, so comparing sequences with a database separates them reliably. Say why the key fails A dichotomous key uses visible features only, so it cannot separate species that share those features. “Suggest and justify” means one clear choice plus a reason that mentions the weakness of the other method.

💡 Exam tip

⚠ Common mix-up

Up next: What Controls Population Size — the biotic and abiotic factors that decide how many individuals an area can hold, and what happens when two species want the same thing.

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