A minimally-invasive method for ancient DNA sampling of Prehistoric bone and antler tools and hunting weapons
Tejero, J.-M.; Cheronet, O.; Gelabert, P.; Zagorc, B.; Alvarez-Fernandez, E.; Averbouh, A.; Bar-Oz, G.; Belfer-Cohen, A.; Bosch, M. D.; Bruck, F.; Cueto, M.; Dockner, M.; Fullola, J. M.; Garate, D.; Giannakoulis, M.; Gonzalez, C.; Jakeli, N.; Mangado, X.; Meshveliani, T.; Neruda, P.; Nigst, P. R.; Simkova, P.; Tapia, J.; Sanchez de la Torre, M.; Schwab, C.; Weber, G.; Pinhasi, R.
Show abstract
Internal and external bony tissues from diverse mammalian taxa are one of the primary animal raw materials exploited for technical and symbolic purposes by Eurasian Upper Palaeolithic hunter-gatherers. Identifying the source species used for osseous raw material is critical to gain insights into these populations behaviour, technology, and subsistence. The study of osseous tools has advanced in the last few years by combining archaeological and biomolecular methods. Ancient genomics opens many new analytical opportunities. Ancient DNA (aDNA) can provide a wealth of information about the animal sources of these objects. Unfortunately, aDNA analyses often involve destructive sampling. Here, we develop and apply a minimally-invasive aDNA sampling method for an assemblage of 42 prehistoric hunting weapons and tools from various Eurasian archaeological sites. We evaluated the impact of our approach on the specimens visually, microscopically and through Micro-CT scans. The surface impacts are marginal, ranging from 0.3-0.4 mm. Using a custom-made DNA capture kit for 54 mammalian species, we obtained sufficient aDNA to identify the taxa of 33% of the objects. For one of the tools, we recovered enough endogenous aDNA to infer the genetic affinities of the individual. Our results also demonstrate that ancient antler, one of the primary raw materials used during a large part of prehistory, is a reliable source of aDNA. Our minimally-invasive aDNA sampling method is therefore effective while preserving osseous objects for potential further analyses: morphometric, technical, genetic, radiometric and more.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Palaeoproteomic identification of a whale bone tool from Bronze Age Heiloo, the Netherlands 96%
- Faunal remains from the Upper Paleolithic site of Nahal Rahaf 2 in the southern Judean Desert, Israel 96%
- Spatio-temporal diversity of dietary preferences and stress sensibilities of early and middle Miocene Rhinocerotidae from Eurasia: impact of climate changes 93%
Similar papers in this journal
- Femora Nutrient Foramina and Aerobic Capacity in Giant Extinct Xenarthrans 92%
- Shedding light on the Ophel biome: The Trans-Tethyan phylogeography of the sulfide shrimp Tethysbaena (Peracarida: Thermosbaenacea) in the Levant 92%
- ACPT gene is inactivated in mammalian lineages that lack enamel and teeth 92%
Similar papers in this journal
- Ecology and demographic structure of an extinct ibex population in Upper Palaeolithic Italian Alps 94%
- High throughput microCT scanning of small specimens: preparation, packing, parameters and post-processing 93%
- Inner Asian maternal genetic origin of the Avar period nomadic elite in the 7th century AD Carpathian Basin 92%
Similar papers in this journal
Similar papers in this journal
- Balancing Barcoding and Genomics: gDNA Quality in Insect Vouchers after HotSHOT DNA extraction 93%
- Towards large-scale museomics projects: a cost-effective and high-throughput extraction method for obtaining historical DNA from museum insect specimens 93%
- The potential of aquatic haematophagous, liquidosomatophagous and macrophagous leeches as a tool for iDNA characterisation 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.