IB Biology HL Classification & Cladistics Paper 1 & 2 ~14 min read

Cladistics

Should a bat be grouped with birds because of its wings, or with mammals because of its fur? Looking at organisms will not settle that. Reading their DNA will — and that is the whole idea behind cladistics.

📚 What you need to know

Grouping by ancestry

Historically, organisms were classified on morphology, which often produced groups whose members were not close relatives at all. DNA sequencing changed that. Organisms grouped by evolutionary relationship form clades, and every member of a clade shares a recent common ancestor.

Clade A group of organisms that have all descended from a common ancestor

A common ancestor is simply a shared ancestor. The most recent common ancestor of two siblings is their parents; for two cousins it is their grandparents. Clades are monophyletic, which means they contain all the descendants of that ancestor — not most of them.

TaxonClade
Grouped onShared featuresShared descent from a common ancestor
Concerned withClassifying and naming organismsIdentifying evolutionary relationships
Given a rankYes — kingdom, phylum, class and so onNo — clades are unranked

If taxonomy is done correctly, all the members of a taxon should form a clade. Because of historical errors, that is not always the case.

Careful with lookalikes. Characteristics within a clade are often inherited from a common ancestor, so members tend to share them. But the reverse does not follow — not all species with shared characteristics are closely related. Grouping organisms on analogous characteristics, which evolved separately, is exactly the mistake cladistics is designed to avoid.

Building clades from evidence

Sequence data

The most objective method uses sequence data from DNA bases, mRNA bases or amino acids in polypeptides. For all three, the rule is the same:

The rule The more similar the sequences, the more closely related the species

Groups with very similar sequences separated into separate species more recently. Groups separated for longer have had more time to accumulate mutations in their DNA, mRNA and amino acid sequences.

Morphology

Species sharing a recent common ancestor are more likely to share similar morphologies, so appearance can sometimes identify clade members. It is more subjective, though, and has caused classification errors: similar morphology can be a sign of convergent evolution rather than recent shared ancestry.

It is also hard to decide which characteristic should decide the grouping. Bats have wings like birds and fur like mammals — which one counts? The answer comes from separating two kinds of trait.

Primitive and derived traits Where on the tree a feature first appears decides which kind of trait it is. primitive trait: backbone derived trait: feathers derived trait: furbirds mammalsEvery member has a backbone; only one branch has feathers, only the other has fur.
The same feature can be either kind. Fur is a primitive trait within the mammal clade, because all mammals have it — but a derived trait within the wider vertebrate clade.
Primitive traitDerived trait
When it evolvedEarly in the lineage of a cladeLater
Who has itAll members of the cladeCan differ between clade members
ExampleAll vertebrates have spinal cords; all insects have six legsWithin the vertebrate clade, birds have feathers while mammals have fur

More closely related species share a larger number of derived traits. That is the rule that decides the bat question: fur is a derived trait shared with mammals, so bats belong with mammals.

The molecular clock

The number of differences between two sets of sequence data tells you how closely related two species are. More differences means the species diverged longer ago.

Those differences arise from mutations, and evidence suggests mutations occur at a constant rate. So the number of mutations indicates how much time has passed since two species diverged. Scientists call that constant rate the molecular clock.

DNA hybridisation

  1. Sections of single-stranded DNA from corresponding parts of the genome are taken from two species.
  2. The two complementary strands are allowed to bind together, or hybridise.
  3. Points where the strands do not bind show where the bases differ.
  4. The number of differences is recorded.
Always call molecular clock results estimates. The assumed rate of mutation does not always match the real rate, and the rate at which mutations accumulate is affected by generation time, population size and selection pressures. That caveat is nearly always worth a mark.

Cladograms

A cladogram is an evolutionary tree showing the probable order of divergence from ancestral species, and therefore the probable relationships between species.

The parts of a cladogram Relationships come from the branch points, not from how close two names look. species A species B species C species D species Enode root terminal branchA and B join at one node, so they are the closest pair E joins the rest only at the root, so it is the most distantly related.
Count the nodes you have to trace back through. One node between two groups means a close relationship; several means a distant one.

How they are constructed

Parsimony in one example. It is more likely that fur evolved once than that it evolved separately several times. So a cladogram places all mammals as descendants of one common ancestor rather than scattering them across the tree. Parsimony provides the criteria for construction — without it, cladograms built from the same data could look completely different.

Reading one

FeatureWhat it tells you
NodeThe point where two branches separate; it represents a common ancestor species
A node immediately adjacent to two cladesThose two clades share a recent common ancestor and are more closely related to each other than to any other clade shown
Several nodes traced back before two clades joinA more distant relationship
RootAt the base; the common ancestor of every organism in the cladogram, from a long way back in evolutionary history
Terminal branchThe most recent species in an evolutionary lineage
Numbers along branchesThe number of base or amino acid changes between one node and the next, usable as a molecular clock
Time scaleShows how many millions of years have passed
🧠

Count nodes, not gaps

Two species printed next to each other may not be close relatives. What matters is how many nodes you trace back before their lines meet. Fewer nodes means a closer relationship.

Worked examples

WE 1

Define and apply the term clade

Define the term clade and explain why a group containing only some descendants of a common ancestor is not one. (3 marks)

Definition A clade is a group of organisms that have all descended from a common ancestor. The requirement Clades are monophyletic, meaning they contain all of the descendants of that ancestor. Why the group fails Leaving some descendants out means the group is not monophyletic, so it is not a true clade and does not reflect the real evolutionary relationships. All descendants, or it is not a clade the word “all” is what the mark is for — do not soften it
WE 2

Interpret a cladogram

Using the cladogram above, deduce which species is most distantly related to species A, and justify your answer. (3 marks)

Step 1: the deduction Species E is the most distantly related to species A. Step 2: the justification Tracing back from A to E, you have to pass through several nodes before the two lines join, and they only meet at the root. Step 3: the comparison A and B join at a single node, so they share the most recent common ancestor and are the closest pair. E, because the two lineages only meet at the root justify using nodes, not by how far apart the labels are printed
WE 3

Evaluate a cladogram’s reliability

A cladogram is constructed from the sequence of a single gene. Evaluate how reliable its conclusions are likely to be. (3 marks)

Point 1: what is good about it Sequence data is the most objective basis for grouping species, and is more reliable than morphology. Point 2: the limitation Reliability depends on the amount of sequence data; a cladogram from one gene is less reliable than one built from several genes. Point 3: the judgement Cladograms show the most probable relationships rather than definite conclusions, and may change if new evidence emerges. Objective, but built on too little data to be treated as settled the phrase “most probable rather than definite” fits almost any cladogram evaluation

💡 Exam tips

⚠ Common mistakes

Up next: Reclassification — what happens when DNA evidence shows that a whole plant family was never a clade at all.

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