Ancient ape fossil yields surprising new insights about human evolution

Scientists have long thought that humans evolved from an ape that moved about on all fours like a chimpanzee, and they’ve puzzled over how and when our distant ancestors came to walk on two feet.

The fossilized pelvis of Rudapithecus, a long-extinct relative of humans and modern apes, may hold the answer. New research on the fragmentary remains suggests that when the beagle-sized ape descended from the trees, she didn’t knuckle-walk like chimps or gorillas, as previously thought. Rather, she stood upright on two legs — much like a human.

“We’ve always asked, ‘Why did our lineage evolve? Why did we stand up from all fours?’ But Rudapithecus begs the question: ’Why did we never drop down on all fours in the first place?’” said Carol Ward, a professor of anatomy at the University of Missouri School of Medicine in Columbia, and lead author of a paper about the research published Sept. 17 in the Journal of Human Evolution.

“It causes us to approach the fossil record and our understanding of our origins in a fundamentally different way than we ever have before,” she added. “It’s a game-changer. The textbooks now get to be rewritten.”

New look at old fossil

The 10-million-year-old pelvis was unearthed in Rudabánya, a city in northern Hungary, in 2006. It’s the only known Rudapithecus pelvis, and one of only four reasonably complete ape pelvises more than 4 million years old.

“This is the oldest pelvis that looks like an ape pelvis,” said study co-author David Begun, a professor of anthropology at the University of Toronto who discovered the fossil.

In 2009, Begun reached out to Ward, an expert on ape pelvis anatomy, for help in analyzing the bone fragment. Working alongside Mike Plavcan, a biological anthropologist at the University of Arkansas in Fayetteville, and Ashley Hammond, a paleoanthropologist at the American Museum of Natural History in New York City, Ward and Begun spent a decade mapping the contours of the fossil and creating a detailed 3D computer model of a complete Rudapithecus pelvis.

A Rudapithecus pelvis fossil, center, overlain on a skeleton of a siamang, compared with a macaque on the left and orangutan on the right.University of Missouri

They also created models of the skeletons of gorillas, macaques, orangutans and other modern-day primates. By comparing the models, they were able to infer Rudapithecus’ anatomy — the curve of its spine, the position of its legs, the mechanics of its gait.

The research shows that Rudapithecus looks quite different from modern apes, whose short, stiff lower backs support their substantial weight while climbing trees but also necessitate moving about on all fours when on the ground.

source: nbcnews.com