Strategic Communications and Marketing News Bureau

Cave excavation pushes back the clock on early human migration to Laos

CHAMPAIGN, Ill. — Fifteen years of archaeological work in the Tam Pa Ling cave in northeastern Laos has yielded a reliable chronology of early human occupation of the site, scientists report in the journal Nature Communications. The team’s excavations through the layers of sediments and bones that gradually washed into the cave and were left untouched for tens of thousands of years reveals that humans lived in the area for at least 70,000 years – and likely even longer. 

“When we first started excavating the cave, we never expected to find humans in that region,” said University of Illinois Urbana-Champaign anthropology professor Laura Shackelford, who led the research with Fabrice Demeter, a professor of anthropology at the University of Copenhagen. “But beginning that first season when we started work there, we found our first modern humans. At the time, that made them the only early modern human fossils in the region.”

A view of the rocky interior of the cave with light filtering in from above. The team's bright lights of excavation can be seen in the lower left side of the image.

Excavations in Tam Pa Ling cave in northeastern Laos reveal that human occupation of the region extends back at least 70,000 years and perhaps much longer.

While the remains of modern Homo sapiens dating back roughly 197,000 years have been recovered in Israel, genetic studies suggest the main phase of early human migration out of Africa and into Asia occurred much later – around 50,000 years ago, Shackelford said. Her team’s earliest excavations in Tam Pa Ling found bone fragments from modern human remains dating to about 40,000 years ago. But as the excavations dug deeper, the age of sediments and animal remains found alongside human bones dated back much earlier. 

In 2019, the team had excavated as far as they could in the cave, reaching bedrock about 23 feet (7 meters) below the surface. The excavations yielded dozens of animal bones and many fragments of human skeletal remains. The deepest human bone recovered – a partial tibia – was resting on bedrock near the bottom of the trench. Analyses of sediments taken not far above this bone indicate the soil was deposited there between 67,000 and 90,000 years ago.

View inside the cave revealing the topography of the cave floor

The excavation of Tam Pa Ling cave involved digging a 23-foot (7-meter) trench from the surface of the cave to bedrock while painstakingly collecting and documenting the soils, animal bones and human bones discovered there.  

“The entire section of the trench goes from about 30,000 years ago to 80,000 to 100,000 years ago,” Shackelford said. “Flood season after flood season, the sediments and bones washed into the cave and were deposited. They’ve been sitting there ever since.”

The team used a variety of techniques to date the sediments and nonhuman mammal bones found at different depths in the cave. For the soil samples, the researchers relied primarily on a technique called optically stimulated luminescence, which reveals how much time has elapsed since sediments were last exposed to light. Numerous soil samples were collected from the cave in total darkness and taken back to the laboratory for analysis. 

The researchers used several other techniques to date the soils, human and animal bones and teeth found at different depths in the trench. 

The human remains were fragmentary, but the site yielded two pieces of skull – both from the frontal region of the head – one of which dated to about 35,000 years ago and the other much older, dating to roughly 67,000 years ago, Shackelford said. 

At first, a comparison of the physical characteristics of the fossils baffled the researchers, Shackelford said. 

“What we saw was that the youngest fossils, the first ones we found, looked old,” she said. “And the oldest fossils that we found at the very bottom looked younger. It was the opposite of what we would expect to find because as you get deeper in time, you think of things becoming more archaic, more like ancestral populations.”

The view from the mouth of Tam Pa Ling cave in northeastern Laos.

The view from the mouth of Tam Pa Ling cave in northeastern Laos.

There are two potential explanations for the differences between the older and younger fossils, Shackelford said. One, the older fossil may be from an ancestral population that had more modern characteristics than their descendants, who interbred with people with more archaic features. The other possibility is that the two skulls represent two distinct migrations into the region. 

“We don’t know how they’re related, but we have two very different looking groups of humans,” Shackelford said. “The older fossil was most likely part of an early migration – a failed migration because it did not give rise to people who are still alive today.”

The team was unable to extract viable DNA from the human remains, a common problem in studies of ancient remains from tropical sites, Shackelford said. 

“I think the only way to settle our questions is with genetic data,” she said. The team is preserving the human fossils in a freezer in the hopes that more refined DNA extraction and analysis techniques will one day yield more answers.

The National Geographic Society supported this research. 

Editor’s note:   

To reach Laura Shackelford, email llshacke@illinois.edu.

To reach Fabrice Demeter, email f.demeter@sund.ku.dk.

The paper “Early presence of Homo sapiens in southeast Asia by 86-68 kyr at Tam Pa Ling, northern Laos” is available online or from the U. of I. News Bureau. 

DOI: 10.1038/s41467-023-38715-y

Read Next

Agriculture Graduate student Andrea Jimena Valdés-Alvarado, left, and food science professor Elvira Gonzalez de Mejia standing in the Edward R. Madigan Laboratory holding samples of the legume pulses they used in the study.

Fermenting legume pulses boosts their antidiabetic, antioxidant properties

CHAMPAIGN, Ill. — Food scientists at the University of Illinois Urbana-Champaign identified the optimal fermentation conditions for pulses ― the dried edible seeds of legumes ― that increased their antioxidant and antidiabetic properties and their soluble protein content. Using the bacteria Lactiplantibacillus plantarum 299v as the microorganism, the team fermented pulses obtained from varying concentrations […]

Expert viewpoints Ukraine’s daring drone attack deep within Russia is significant but not war-redefining, and may hinder U.S. efforts to end the war, says University of Illinois Urbana-Champaign political science professor and international relations expert Nicholas Grossman.

Does Ukraine drone attack inside Russia augur new era of asymmetric warfare?

Champaign, Ill. — University of Illinois Urbana-Champaign political science professor Nicholas Grossman is the author of “Drones and Terrorism: Asymmetric Warfare and the Threat to Global Security” and specializes in international relations. Grossman spoke with News Bureau business and law editor Phil Ciciora about “Operation Spiderweb,” Ukraine’s expertly plotted drone attack inside the Russian mainland. […]

Behind the scenes Photo of a man with his leg lifted and his boot in the foreground, while another man in the foreground reacts.

Staging a fight

CHAMPAIGN, Ill. — A group of theatre students is gathered in a rehearsal room at Krannert Center for the Performing Arts at the University of Illinois Urbana-Champaign. They are each paired with a partner, and I watch as they shove each other in the chest, knee one another in the gut and then punch their […]

Strategic Communications and Marketing News Bureau

507 E. Green St
MC-426
Champaign, IL 61820

Email: stratcom@illinois.edu

Phone (217) 333-5010