Ancient genome-wide analyses infer kinship structure in an Early Medieval Alemannic graveyard
O'Sullivan N, Posth C, Coia V, Schuenemann VJ, Price TD, Wahl J, Pinhasi R, Zink A,
DOI: 10.1126/sciadv.aao1262
The aim of this PhD project is to apply NGS (next generation sequencing) techniques to archaeological samples to retrieve biological information about individuals that would be difficult or impossible using PCR based approaches. Ancient DNA will be sequenced using techniques that continue to develop in the field of biological archaeology. Often ancient DNA is too fragmented or degraded for conventional analysis. Using NGS it is possible to sequence all the DNA present in an unbiased fashion and identify the presence of pathogen specific genotypes. The student aims to apply the latest improvements in the field of palaeogenetics to archaeological speciens. In the last decade, sequencing and computing technologies have developed to an extent that ancient DNA can be affordably and rapidly analysed. High throughput sequencing provides increased statistical weight to results allowing confident inferences to be made about the degree of contamination, degradation and even the age of the DNA. This has also expanded the range of archaeological samples that can be analysed. The researcher is involved in several projects analysing ancient DNA. The researcher is the primary researcher in three ongoing case studies: analysis of the Iceman’s clothing, metagenomic analysis of calculus from teeth and population genetics of an ancient gravesite in southern Germany.
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O'Sullivan N, Posth C, Coia V, Schuenemann VJ, Price TD, Wahl J, Pinhasi R, Zink A,
DOI: 10.1126/sciadv.aao1262
O'Sullivan N, Teasdale M, Mattiangeli V, Maixner F, Pinhasi R, Bradley D, Zink A
The attire of the Tyrolean Iceman, a 5,300-year-old natural mummy from the ötzal Italian Alps, provides a surviving example of ancient manufacturing technologies. Research into his garments has however, been limited by ambiguity surrounding their source species. Here we present a targeted enrichment and sequencing of full mitochondrial genomes sampled from his clothes and quiver, which elucidates the species of production for nine fragments. Results indicate that the majority of the samples originate from domestic ungulate species (cattle, sheep and goat), whose recovered haplogroups are now at high frequency in today's domestic populations. Intriguingly, the hat and quiver samples were produced from wild species, brown bear and roe deer respectively. Combined, these results suggest that Copper Age populations made considered choices of clothing material from both the wild and domestic populations available to them. Moreover, these results show the potential for the recovery of complete mitochondrial genomes from degraded prehistoric artefacts.
DOI: 10.1038/srep31279
More information: https://www.scopus.com/inward/record.uri?eid=2-s2.0-8498 ...