Author
Listed:
- Frederik Valeur Seersholm
(University of Copenhagen)
- Karl-Göran Sjögren
(University of Gothenburg)
- Julia Koelman
(Uppsala University)
- Malou Blank
(University of Gothenburg)
- Emma M. Svensson
(Uppsala University)
- Jacqueline Staring
(Lygature)
- Magdalena Fraser
(Uppsala University)
- Thomaz Pinotti
(University of Copenhagen
Universidade Federal de Minas Gerais)
- Hugh McColl
(University of Copenhagen)
- Charleen Gaunitz
(University of Copenhagen)
- Tatiana Ruiz-Bedoya
(Uppsala University
University of Toronto)
- Lena Granehäll
(Uppsala University
Institute for Mummy Studies Eurac Research)
- Berenice Villegas-Ramirez
(Uppsala University)
- Anders Fischer
(Sealand Archaeology)
- T. Douglas Price
(University of Gothenburg)
- Morten E. Allentoft
(University of Copenhagen
Curtin University)
- Astrid K. N. Iversen
(University of Oxford)
- Tony Axelsson
(University of Gothenburg)
- Torbjörn Ahlström
(Lund University)
- Anders Götherström
(Stockholm University and the Swedish Museum of Natural History
Stockholm University)
- Jan Storå
(Stockholm University)
- Kristian Kristiansen
(University of Copenhagen
University of Gothenburg)
- Eske Willerslev
(University of Copenhagen
University of Cambridge)
- Mattias Jakobsson
(Uppsala University
University of Johannesburg)
- Helena Malmström
(Uppsala University
University of Johannesburg)
- Martin Sikora
(University of Copenhagen)
Abstract
In the period between 5,300 and 4,900 calibrated years before present (cal. bp), populations across large parts of Europe underwent a period of demographic decline1,2. However, the cause of this so-called Neolithic decline is still debated. Some argue for an agricultural crisis resulting in the decline3, others for the spread of an early form of plague4. Here we use population-scale ancient genomics to infer ancestry, social structure and pathogen infection in 108 Scandinavian Neolithic individuals from eight megalithic graves and a stone cist. We find that the Neolithic plague was widespread, detected in at least 17% of the sampled population and across large geographical distances. We demonstrate that the disease spread within the Neolithic community in three distinct infection events within a period of around 120 years. Variant graph-based pan-genomics shows that the Neolithic plague genomes retained ancestral genomic variation present in Yersinia pseudotuberculosis, including virulence factors associated with disease outcomes. In addition, we reconstruct four multigeneration pedigrees, the largest of which consists of 38 individuals spanning six generations, showing a patrilineal social organization. Lastly, we document direct genomic evidence for Neolithic female exogamy in a woman buried in a different megalithic tomb than her brothers. Taken together, our findings provide a detailed reconstruction of plague spread within a large patrilineal kinship group and identify multiple plague infections in a population dated to the beginning of the Neolithic decline.
Suggested Citation
Frederik Valeur Seersholm & Karl-Göran Sjögren & Julia Koelman & Malou Blank & Emma M. Svensson & Jacqueline Staring & Magdalena Fraser & Thomaz Pinotti & Hugh McColl & Charleen Gaunitz & Tatiana Ruiz, 2024.
"Repeated plague infections across six generations of Neolithic Farmers,"
Nature, Nature, vol. 632(8023), pages 114-121, August.
Handle:
RePEc:nat:nature:v:632:y:2024:i:8023:d:10.1038_s41586-024-07651-2
DOI: 10.1038/s41586-024-07651-2
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