Teeth fossilise beautifully. Soft tissue does not. So if you want to know what an extinct human relative ate, the skull and the teeth are almost all you have — which makes them extremely useful and slightly dangerous at the same time. This page covers how the deduction works, and where it goes wrong.
📘 What you need to know
Humans belong to the family Hominidae along with chimps, gorillas and orangutans.
Most living hominids are omnivores, but their diets differ — chimps mainly frugivores, gorillas mainly herbivores.
Jaw and dentition are specialised for diet: strong jaw muscles and large grinding teeth for tough plants, smaller jaws and long canines for softer fruit and meat.
Incisors cut, canines hold and tear, premolars and molars grind.
Because skulls and jaws preserve well, the same reasoning can be applied to extinct hominids to infer diet and ecosystem structure.
But teeth do not always match diet, so conclusions need other evidence too.
NOS: deductions are made from theories, and must be revised when new evidence appears.
The family, and the diets in it
Hominidae is the great ape family: humans, chimpanzees, gorillas and orangutans. Gibbons are close relatives, but they sit in a separate family, Hylobatidae. Both families belong to the wider ape group, so you will sometimes see gibbons listed loosely alongside the hominids.
Most living hominids are omnivores, meaning their nutrition comes from a combination of animal and plant material. Within that, the emphasis differs:
Chimps are mainly frugivores — their main diet is fruit, though they also eat other plant matter and some small mammals.
Gorillas are mainly herbivores, feeding mostly on leafy vegetation, though they do sometimes eat insects.
The jaw follows the food
Studying the skulls of living hominids shows that the jaw and dentition of each species are specialised for its particular diet.
Chimps have relatively small jaw muscles, only strong enough to chew softer fruit and animal tissue. They have small incisors and long canines, which suit biting and tearing meat.
Gorillas have very strong jaw muscles for biting and grinding tough vegetation, and large molars and premolars for grinding it down.
The four types of teeth
Roots are drawn in red. Notice that the teeth doing the hardest grinding have more than one root, which anchors them against the force.
Incisors are chisel shaped, for cutting and biting.
Canines are pointed, for holding and tearing.
Premolars and molars are flat and ridged, for grinding.
Reading diet from a fossil
Because there is a clear relationship between diet and dentition in living hominids, the same principle can be applied to extinct hominid species. Skulls and jaws are often well preserved, so scientists can study them and work out both what those species ate and the structure of the ecosystems they lived in.
Extinct hominids you may meet include Australopithecus africanus, Paranthropus robustus, Homo floresiensis and Homo neanderthalensis.
A ridge along the top of the skull is a giveaway. Muscle has to attach to bone, so a very large chewing muscle needs extra bone to attach to.
Paranthropus robustus — a tough plant diet
The skull shape is robust, similar to a modern gorilla, with attachment points for large jaw muscles for chewing tough vegetation.
Large molars and premolars for grinding.
Thick tooth enamel, protecting the teeth from damage by tough plant matter.
Homo floresiensis — mostly plants, possibly some meat
Large premolars and small canines.
Square, robust jaws, a feature shared with plant-eating gorillas.
Tooth abrasion patterns suggest a fibrous, plant-based diet.
Their skulls are more similar in shape to humans than other human ancestors, which suggests reduced biting forces.
Evidence of hunting and cutting tools gives separate support for some meat eating.
Try it yourself. Several museums host 3D fossil scans in digital collections. Comparing Homo sapiens, Homo floresiensis and Paranthropus robustus side by side is the quickest way to see how differently a jaw can be built.
Where the deduction breaks down
This is the part students skip and examiners reward. Dentition can sometimes be clearly linked to diet, but teeth do not always give a perfect indication of what a species eats:
Humans eat quite a lot of meat, but our teeth look more like those of plant-eaters.
Orangutans and gorillas have pointed canines but do not eat meat.
Male chimps have longer canines than females, despite eating the same diet.
The reason is that teeth play a role in other processes too — defending territory, or competing for mates. So other factors have to be considered before drawing conclusions about the diets of human ancestors.
One way to get better evidence is to study fossil teeth under a microscope and look for patterns of abrasion, which can indicate diet more directly than shape alone.
NOS: deductions can be made from theories. Scientists start by making observations — how the teeth of living hominids relate to their diets. Those observations are used to develop a theory, which lets them deduce the diets of extinct species from dentition. But new evidence must be taken into account: the mismatches above tell scientists their deductions may be flawed and that additional sources of evidence are needed.
Worked examples
WORKED EXAMPLE
A fossil hominid skull has a bony ridge along the top, very large flat molars and thick enamel. Deduce its likely diet, giving reasons. [3]
Take each feature and say what it impliesThe bony ridge gives attachment points for large jaw muscles, so the bite force was high.Large flat molars are for grinding rather than cutting or tearing.Thick enamel protects the teeth from wear.Now the conclusionA diet of tough, fibrous plant materialthe marks are for linking each feature to the diet, not for the diet on its own.
WORKED EXAMPLE
Suggest two reasons why dentition alone is not enough to determine the diet of an extinct hominid. [2]
Reason 1: teeth do other jobsTeeth are also used in defending territory and competing for mates, so their size may not reflect diet.Reason 2: living species already break the ruleHumans eat meat but have plant-eater teeth, and gorillas have pointed canines without eating meat.Additional evidence, such as tooth abrasion patterns or tools, is neededgive a real example for each reason — general statements score less.
WORKED EXAMPLE
Compare the jaws and teeth of chimps and gorillas, and relate the differences to their diets. [4]
Chimps firstRelatively small jaw muscles, small incisors and long canines — enough for softer fruit and for biting and tearing animal tissue.Now gorillasVery strong jaw muscles, and large molars and premolars for grinding.Link both to dietChimps are mainly frugivores; gorillas feed mainly on tough leafy vegetationa “compare” question needs both animals in every point you make.
💡 Exam tip
Learn the four tooth types and their functions. They come up as a straight recall mark.
For any fossil skull question, work through feature → what it means → diet. Never jump straight to the diet.
Use frugivore, herbivore and omnivore precisely rather than “plant eater”.
Always be ready to give the limitations of the dentition method. It is worth marks on its own.
If the question is a NOS one, use the words observation, theory, deduction and new evidence.
Say “the evidence suggests” rather than “this proves”. Fossil work is inference.
⚠ Common mix-up
Putting gibbons in Hominidae. Gibbons are in Hylobatidae; Hominidae is humans, chimps, gorillas and orangutans. Plenty of textbooks blur this.
Saying pointed canines prove meat eating. Gorillas and orangutans have them and eat plants.
Assuming a bony crest means a big brain. It means big chewing muscles, not extra braincase.
Confusing premolars and molars with incisors. Grinding teeth are at the back; cutting teeth are at the front.
Treating a deduction as a fact. Diet from dentition is a well-supported inference, not a measurement.
Forgetting non-tooth evidence. Tools and abrasion patterns are separate lines of evidence.
Up next: Nutritional Adaptations — the arms races that shape how organisms feed, from aphid mouthparts to plant poisons to lions hunting in packs.
Want this explained one-to-one?
Book a free session with an experienced IB Biology tutor and get your trickiest topics made simple.