Early Oldowan technology thrived during Pliocene environmental change in the Turkana Basin, Kenya

D David R. Braun (Center for the Advanced Study of Human Paleobiology, Department of Anthropology, George Washington University) D Dan V. Palcu Rolier E Eldert L. Advokaat W Will Archer N Niguss G. Baraki M Maryse D. Biernat E Ella Beaudoin A Anna K. Behrensmeyer (Department of Paleobiology, National Museum of Natural History, Smithsonian Institution) R René Bobe K Katherine Elmes F Frances Forrest (Department of Sociology and Anthropology, Fairfield University) A Ashley S. Hammond (Division of Anthropology, American Museum of Natural History) L Luigi Jovane R Rahab N. Kinyanjui A Ana P. de Martini P Paul R. D. Mason A Amanda McGrosky (Department of Biology, Elon University) J Joanne Munga E Emmanuel K. Ndiema D David B. Patterson J Jonathan S. Reeves D Diana C. Roman M Mark J. Sier P Priyeshu Srivastava K Kristen Tuosto K Kevin T. Uno A Amelia Villaseñor J Jonathan G. Wynn J John W. K. Harris (Department of Anthropology, Rutgers University) S Susana Carvalho

Abstract

Abstract Approximately 2.75 million years ago, the Turkana Basin in Kenya experienced environmental changes, including increased aridity and environmental variability. Namorotukunan is a newly discovered archaeological site which provides a window into hominin behavioral adaptations. This site lies within the upper Tulu Bor and lower Burgi members of the Koobi Fora Formation (Marsabit District, Kenya), presently a poorly understood time interval due to large-scale erosional events. Moreover, this locale represents the earliest known evidence of Oldowan technology within the Koobi Fora Formation. Oldowan sites, older than 2.6 million years ago, are rare, and these typically represent insights from narrow windows of time. In contrast, Namorotukunan provides evidence of tool-making behaviors spanning hundreds of thousands of years, offering a unique temporal perspective on technological stability. The site comprises three distinct archaeological horizons spanning approximately 300,000 years (2.75 − 2.44 Ma). Our findings suggest continuity in tool-making practices over time, with evidence of systematic selection of rock types. Geological descriptions and chronological data, provide robust age control and contextualize the archaeological finds. We employ multiple paleoenvironmental proxies, to reconstruct past ecological conditions. Our study highlights the interplay between environmental shifts and technological innovations, shedding light on pivotal factors in the trajectory of human evolution.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 04, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (30)

D

David R. Braun

Center for the Advanced Study of Human Paleobiology, Department of Anthropology, George Washington University

D

Dan V. Palcu Rolier

E

Eldert L. Advokaat

W

Will Archer

N

Niguss G. Baraki

M

Maryse D. Biernat

E

Ella Beaudoin

A

Anna K. Behrensmeyer

Department of Paleobiology, National Museum of Natural History, Smithsonian Institution

R

René Bobe

K

Katherine Elmes

F

Frances Forrest

Department of Sociology and Anthropology, Fairfield University

A

Ashley S. Hammond

Division of Anthropology, American Museum of Natural History

L

Luigi Jovane

R

Rahab N. Kinyanjui

A

Ana P. de Martini

P

Paul R. D. Mason

A

Amanda McGrosky

Department of Biology, Elon University

J

Joanne Munga

E

Emmanuel K. Ndiema

D

David B. Patterson

J

Jonathan S. Reeves

D

Diana C. Roman

M

Mark J. Sier

P

Priyeshu Srivastava

K

Kristen Tuosto

K

Kevin T. Uno

A

Amelia Villaseñor

J

Jonathan G. Wynn

J

John W. K. Harris

Department of Anthropology, Rutgers University

S

Susana Carvalho