Please use this identifier to cite or link to this item: https://cir.cenieh.es/handle/20.500.12136/3372
Title: Homo erectus adapted to steppe-desert climate extremes one million years ago
Authors: Mercader, Julio
Akuku, Pamela
Boivin, Nicole
Camacho, Alfredo
Carter, Tristan
Clarke, Siobhán
Cueva Temprana, Arturo
Favreau, Julien
Galloway, Jennifer
Hernando, Raquel
Huang, Haiping
Hubbard, Stephen
Kaplan, Jed O
Larter, Steve
Magohe, Stephen
Mohamed, Abdallah
Mwambwiga, Aloyce
Oladele, Ayoola
Petraglia, Michael
Roberts, Patrick
Saladié, Palmira
Shikoni, Abel
Silva, Renzo
Soto, María
Stricklin, Dominica
Mekonnen, Degsew Z
Zhao, Wenran
Durkin, Paul
Keywords: Environmental sciences;Evolution
Issue Date: Jan-2025
Publisher: Springer Nature
Citation: Communications Earth & Environment, 2025, 6(1)
Abstract: Questions about when early members of the genus Homo adapted to extreme environments like deserts and rainforests have traditionally focused on Homo sapiens. Here, we present multidisciplinary evidence from Engaji Nanyori in Tanzania's Oldupai Gorge, revealing that Homo erectus thrived in hyperarid landscapes one million years ago. Using biogeochemical analyses, precise chronometric dating, palaeoclimate simulations, biome modeling, fire history reconstructions, palaeobotanical studies, faunal assemblages, and archeological evidence, we reconstruct an environment dominated by semidesert shrubland. Despite these challenges, Homo erectus repeatedly occupied fluvial landscapes, leveraging water sources and ecological focal points to mitigate risk. These findings suggest archaic humans possessed an ecological flexibility previously attributed only to later hominins. This adaptability likely facilitated the expansion of Homo erectus into the arid regions of Africa and Eurasia, redefining their role as ecological generalists thriving in some of the most challenging landscapes of the Middle Pleistocene.
Description: All data necessary for the conclusions of the study are provided with the Article. Geochronometric and geochemical datasets used for dating and stratigraphic correlation, as well as palaeobotanical protocols, are publicly available with the Canadian Federated Research Data Repository, with digital objects identifiers cited in pertinent places within the Article
URI: https://cir.cenieh.es/handle/20.500.12136/3372
ISSN: 2662-4435
DOI: 10.1038/s43247-024-01919-1
Editor version: https://doi.org/10.1038/s43247-024-01919-1
Type: Article
Appears in Collections:Paleobiología



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