Tracking individual dietary choices in complex past food webs: Integrated bulk collagen and compound-specific stable isotope analysis of urban cats

Reconstructing dietary strategies in past urban environments is challenging because of the complexity of anthropogenic impacts on food webs, in which diverse local and imported resources with variable isotopic compositions limit the interpretive power of conventional bulk-collagen stable isotope analysis. We address this problem using domestic cats as dietary proxies, exploiting their opportunistic foraging behavior to track resource partitioning within a medieval urban landscape. We present an integrated multi-isotope study of cat bone collagen from medieval Gdańsk (northern Poland) and six regional comparative sites, combining bulk collagen δ 13 C, δ 15 N, and δ 34 S analysis with compound-specific δ 13 C and δ 15 N analysis of amino acids. Despite apparent isotopic homogeneity in the Gdańsk assemblage within the conventional bulk collagen dual-isotope space, the expanded isotopic framework reveals substantial individual-level dietary variability. Sulfur isotopes indicate diverse food provenances, including baseline values of the marine ecosystem and grain imported from inland regions. Amino acid-based fingerprinting identifies diets spanning terrestrial C 3 and C 4 , freshwater, and marine ecosystem baselines, while amino acid-based trophic position proxies reveal highly variable individual trophic levels uncorrelated with bulk collagen δ 15 N values. These findings demonstrate that isotopic homogeneity in the conventional dual-isotope space can mask substantial dietary heterogeneity. Our study highlights the potential of integrating amino acid analysis with sulfur isotope analysis to reconstruct individual-level food choices in complex past environments.

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Publication Details

Journal
Journal of Archaeological Science
Published
2026-09-12
DOI
https://doi.org/10.1016/j.jas.2026.106687
Primary Topic
Isotope Analysis in Ecology
Type
article
Field-Weighted Citation Impact
0.00

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article

Tracking individual dietary choices in complex past food webs: Integrated bulk collagen and compound-specific stable isotope analysis of urban cats

Urszula Iwaszczuk, Wim Van Neer, Anna Gręzak, Hee Young Yun et al.
Journal of Archaeological Science
Isotope Analysis in Ecology
article

Tracking individual dietary choices in complex past food webs: Integrated bulk collagen and compound-specific stable isotope analysis of urban cats

Urszula Iwaszczuk, Wim Van Neer, Anna Gręzak, Hee Young Yun, Daniel Makowiecki, Magdalena Krajcarz, Kyungcheol Choy, Maciej T. Krajcarz
article en

Abstract

Reconstructing dietary strategies in past urban environments is challenging because of the complexity of anthropogenic impacts on food webs, in which diverse local and imported resources with variable isotopic compositions limit the interpretive power of conventional bulk-collagen stable isotope analysis. We address this problem using domestic cats as dietary proxies, exploiting their opportunistic foraging behavior to track resource partitioning within a medieval urban landscape. We present an integrated multi-isotope study of cat bone collagen from medieval Gdańsk (northern Poland) and six regional comparative sites, combining bulk collagen δ 13 C, δ 15 N, and δ 34 S analysis with compound-specific δ 13 C and δ 15 N analysis of amino acids. Despite apparent isotopic homogeneity in the Gdańsk assemblage within the conventional bulk collagen dual-isotope space, the expanded isotopic framework reveals substantial individual-level dietary variability. Sulfur isotopes indicate diverse food provenances, including baseline values of the marine ecosystem and grain imported from inland regions. Amino acid-based fingerprinting identifies diets spanning terrestrial C 3 and C 4 , freshwater, and marine ecosystem baselines, while amino acid-based trophic position proxies reveal highly variable individual trophic levels uncorrelated with bulk collagen δ 15 N values. These findings demonstrate that isotopic homogeneity in the conventional dual-isotope space can mask substantial dietary heterogeneity. Our study highlights the potential of integrating amino acid analysis with sulfur isotope analysis to reconstruct individual-level food choices in complex past environments.

Journal of Archaeological ScienceVol. 194
Nicolaus Copernicus University (PL), Institute of Mediterranean and Oriental Cultures (PL), Instytut Nauk Geologicznych (PL), State Archaeological Museum (PL), Hanyang University (KR), Anyang University (KR), Polish Academy of Sciences (PL)
Narodowe Centrum Nauki
Zero hunger
Openalex Percentile: Top 11%
Isotope Analysis in Ecology
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