When collagen fails: Zinc isotopes unlock Sumerian lifeways in southern Mesopotamia

M Matteo Giaccari (Department of Earth Sciences, Sapienza Università di Roma) L Licia Romano (School of Historical and Philosophical Studies, Faculty of Arts, University of Melbourne) S Silvia Soncin (Department of Environmental Biology, Sapienza Università di Roma) S Sofia Panella (Department of Environmental Biology, Sapienza Università di Roma) F Francesca Alhaique (Bioarchaeology Service, Museo delle Civiltà) F Franco D’Agostino (Department Italian Institute of Oriental Studies, Sapienza University of Rome) K Klervia Jaouen (Géosciences Environnement Toulouse, Centre National de la Recherche Scientifique UMR 5563, Observatoire Midi-Pyrénées) M Mary Anne Tafuri

Abstract

Reconstructing past lifeways and diets is essential to understanding the emergence of urban societies. However, in what are now arid environments like southern Mesopotamia, poor collagen preservation has long hampered direct isotopic analysis of trophic levels. This limitation has left key gaps in our understanding of subsistence in one of the world’s earliest urban heartlands. Here, we apply zinc isotope analysis to human and faunal dental enamel from the third-millennium BCE site of Abu Tbeirah (Iraq), integrating δ 13 C, δ 18 O, and trace element ratios (Ba/Ca and Sr/Ca). This multiproxy approach reveals an omnivorous diet based on C 3 cereals, terrestrial animal products (likely including pigs), and limited freshwater resources, with no or little evidence of marine fish consumption, despite the site’s proximity to the ancient shoreline. Dietary patterns do not vary by sex, suggesting broad access to similar food sources within this nonelite population. Moreover, zinc and carbon isotopes proved valuable in identifying animal feeding practices. Our results provide direct dietary evidence from southern Mesopotamia, overcoming long-standing preservation challenges. The results allow us to evaluate specific expectations about diet and animal management in a collagen-poor context, also highlighting early-life feeding behaviors. They demonstrate the power of zinc isotopes to reconstruct trophic level in collagen-poor contexts, opening broad avenues for bioarchaeological research in early complex societies.

Article Details

Volume / Issue Vol. 123, Issue 11
Published March 17, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (8)

M

Matteo Giaccari

Department of Earth Sciences, Sapienza Università di Roma

L

Licia Romano

School of Historical and Philosophical Studies, Faculty of Arts, University of Melbourne

S

Silvia Soncin

Department of Environmental Biology, Sapienza Università di Roma

S

Sofia Panella

Department of Environmental Biology, Sapienza Università di Roma

F

Francesca Alhaique

Bioarchaeology Service, Museo delle Civiltà

F

Franco D’Agostino

Department Italian Institute of Oriental Studies, Sapienza University of Rome

K

Klervia Jaouen

Géosciences Environnement Toulouse, Centre National de la Recherche Scientifique UMR 5563, Observatoire Midi-Pyrénées

M

Mary Anne Tafuri