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Biology subjects

Carciumaru, M.

Publications and source records attributed to Carciumaru, M..

2 recordsLinked to original sources

Old Collections, New Perspectives: Analytical Reassessment of One of Europe's Biggest Archaeological Broomcorn Millet Deposits (Romania)

The broomcorn millet grains (Panicum miliaceum) analysed in this study, recovered from Morteni tell (Romania), represent one of Europes largest archaeological millet deposits (150 kg). Originally attributed to the Chalcolithic period (Gumelnita culture), radiocarbon dating revealed a significantly later context (361 cal BC - 61 cal AD (95.4%)), placing the grains in the Late Iron Age - Latene, when millet was an established staple in the region. The uncharred, desiccated grains exhibited uneven preservation: while some retained isotopic values akin to fresh millet, others showed evidence of nitrogen loss due to diagenesis. High {delta}15N values point to intensive manuring, highlighting millets agricultural significance during the Iron Age. Combining isotopic data with FTIR-ATR analysis allowed the detection of diagenetic impacts and underscored the importance of cross-disciplinary approaches in archaeobotanical studies. These findings demonstrate the necessity of radiocarbon dating and integrated analyses to avoid misinterpretations based on stratigraphy alone and to enhance the reliability of data on ancient crop use and significance.

paleontology↗

Ancient biomolecules suggest learned foraging strategy in extinct cave bears

Studying the behavioural ecology of long-extinct species is challenging due to the difficulty in measuring the behavioural phenotype and correlating this with genetic and environmental factors. However, a multidisciplinary approach integrating isotope analysis of diet and ancient DNA analysis of genetic relationships offers a potential framework to test the proximate causes of dietary preferences. Our study focuses on Late Pleistocene cave bears from the Romanian Carpathians. Stable isotope analysis of bone collagen reveals substantial lifetime variation in food plant preferences among individuals. We find that bears with similar diets do not cluster according to their population structure, sex, time period, climatic conditions, or location. This disconnect suggests that diet preference in cave bears is not genetically inherited, and instead that individuals adapted their diets based on foraging experience. This integrative approach opens new avenues for understanding Pleistocene animal behaviour, leveraging ancient biomolecules synergistically to reveal insights otherwise inaccessible.

evolutionary biology↗