Level 1 - Absolute Beginner
Scientists find an old skull bone in South Africa. The bone is about two million years old. It comes from an early kind of human.
The place is called Drimolen. It is a cave site near the city of Johannesburg. Many old bones come from this place.
This bone is from a grown-up. Before this, scientists only have a bone from a child. Now they can see what the adults look like.
The bone is older than other bones of this kind. So this early human lives in Africa earlier than we think. The leader of the study is Jesse Martin.
- skull
- The hard bone of the head.
- bone
- A hard white part inside the body.
- cave
- A big hole in rock or in the ground.
- grown-up
- A person who is not a child any more.
- child
- A very young person.
- scientists
- People who study the world and ask questions about it.
- million
- The number 1,000,000.
- study
- Careful work to learn about something.
Level 2 - Elementary
Researchers in South Africa have described a new fossil that changes the story of early humans. It is a piece of an adult skull from a species called Homo erectus. The fossil has the name DNH 127, and it is about two million years old. It was found at Drimolen Main Quarry, a cave site in an area known as the Cradle of Humankind.
This is the first adult Homo erectus ever found at Drimolen. The only other Homo erectus skull piece from the site, called DNH 134, belonged to a child of about two to four years old. Because of that, scientists did not know much about the adults. Dr. Jesse Martin of La Trobe University in Australia said that "there was uncertainty about what the adult version may have looked like".
The age of the new fossil matters a lot. Adult Homo erectus fossils from Dmanisi in Georgia are about 1.8 million years old. The South African fossil is roughly 200,000 years older than those. Martin said the find gives "further confirmation that this species first appeared in southern Africa 2 million years ago".
The paper describes 18 newly published skull and jaw fossils from the quarry, including DNH 127. Some belong to Homo erectus and some belong to Paranthropus robustus, another early hominin with very big teeth and strong jaws. The quarry was first found in 1992 and was dug until 2019, but many of its fossils had never been properly described. The study appeared in the journal Annals of Human Biology.
- fossil
- The hard remains of an animal or plant that lived long ago.
- species
- A group of living things of the same kind.
- adult
- A fully grown person or animal.
- quarry
- A place where rock is dug out of the ground.
- uncertainty
- The state of not being sure about something.
- hominin
- A human or a close relative of humans in the family tree.
- jaw
- The bone that holds the teeth and moves when you chew.
- journal
- A magazine where scientists publish their work.
Level 3 - Intermediate
When a single fragment of bone can move the clock on an entire species, the fossil deserves attention. Writing in Annals of Human Biology, a team led by Dr. Jesse Martin of La Trobe University has described DNH 127, an adult Homo erectus specimen from Drimolen Main Quarry in South Africa's Cradle of Humankind, and dated it to roughly two million years ago. That is about 200,000 years earlier than the adult Homo erectus skulls from Dmanisi in Georgia, which sit at about 1.8 million years, and the authors argue that it confirms the species first appeared in southern Africa.
Until now, Drimolen's only Homo erectus skull material came from DNH 134, a child who died at roughly two to four years of age. A juvenile skull is a difficult witness, because growth keeps changing the very features that anatomists use to identify a species, and Martin has noted that "there was uncertainty about what the adult version may have looked like". An adult specimen removes part of that uncertainty, which is why a modest piece of bone can carry an argument about timing.
DNH 127 arrives as part of a much larger release: 18 newly published hominin cranial and jaw remains from the same quarry, assigned either to Homo erectus or to Paranthropus robustus. The second species is by far the more abundant of the two. Martin notes that at Drimolen in this period, Paranthropus robustus outnumbered Homo erectus by more than ten to one, a reminder that the landscape of two million years ago was not a stage set for our own ancestors but a crowded place where different kinds of hominin overlapped.
The Paranthropus material carries its own lesson. Compared with the specimens from Swartkrans Cave, which are roughly 200,000 years younger, the Drimolen population looks distinct enough that the team supports the subspecies name Paranthropus robustus ukusa. Between about two and 1.8 million years ago, Paranthropus robustus developed larger teeth and stronger chewing muscles, the signature of a lineage committing further to tough plant foods, a commitment that ended in extinction. Homo erectus, the first of our relatives with roughly modern body proportions, took the other path and became the first known to spread out of Africa.
- specimen
- A single example of something that scientists study.
- juvenile
- Young and not yet fully grown.
- anatomists
- Scientists who study the structure of bodies and bones.
- cranial
- Relating to the skull.
- abundant
- Present in large numbers or amounts.
- lineage
- A line of descent, one group of living things descended from another.
- subspecies
- A distinct population within a species, given its own third name.
- extinction
- The complete dying out of a species.
Level 4 - Advanced
Paleoanthropology is a discipline perpetually asked to build timelines out of fragments, and the latest fragment is a consequential one. In Annals of Human Biology, Jesse Martin of La Trobe University and colleagues including A. B. Leece, Stephanie Baker, Andy I. R. Herries and David S. Strait describe DNH 127, which Martin characterizes as "a new adult fossil attributed to Homo erectus", recovered from Drimolen Main Quarry in the Cradle of Humankind, the cluster of limestone caves northwest of Johannesburg. At roughly two million years old it predates the adult Homo erectus crania from Dmanisi in Georgia by some 200,000 years, and Martin presents it as "further confirmation that this species first appeared in southern Africa 2 million years ago".
It is worth being precise about what such a specimen can and cannot settle. A single adult cranial fragment, however well dated, does not by itself establish a place of origin: the fossil record is a record of preservation and of excavation effort, not of population density, and South Africa's limestone caves hold and expose material that an open landscape elsewhere would simply have erased. What DNH 127 does supply is an adult morphology where previously there was only DNH 134, a child of roughly two to four years whose diagnostic features were still unformed. The species identification of a juvenile is always provisional, and Martin's own framing concedes the point: "there was uncertainty about what the adult version may have looked like". Replacing an inference with an observation is real progress even when it falls short of proof.
The chronological squeeze, however, is genuine. If adults of the species were already present in southern Africa two million years ago, the interval available for Homo erectus to arise, disperse across the continent and reach the Caucasus by 1.8 million years narrows considerably. Either that dispersal was faster than once assumed, or the species is older still and its earliest representatives remain unexcavated, or the taxonomic boundary that gathers these specimens under a single name is looser than the tidy narrative of one exodus implies. Each reading is defensible, which is the useful conclusion: DNH 127 tightens a constraint rather than closing a debate.
The quieter story here is institutional. Drimolen was identified in 1992 and worked through 2019, yet the 18 hominin cranial and jaw specimens in this paper had never been formally described, a condition that is ordinary rather than scandalous: collections worldwide hold material that waits years or decades for someone with the time and the comparative framework to publish it. The payoff of finally doing that work is visible in the Paranthropus robustus half of the sample, which outnumbers Homo erectus at the site by more than ten to one and which, set against the roughly 200,000 years younger assemblage from Swartkrans Cave, documents a lineage acquiring larger teeth and more powerful chewing musculature on its way to extinction. The Drimolen population is distinctive enough that the authors support the subspecies designation Paranthropus robustus ukusa. Two hominins shared that landscape, and the abundant one was the specialist that vanished while the rare one was the generalist that left.