Literature DB >> 17629747

Genetic variation in prehistoric Sardinia.

David Caramelli1, Cristiano Vernesi, Simona Sanna, Lourdes Sampietro, Martina Lari, Loredana Castrì, Giuseppe Vona, Rosalba Floris, Paolo Francalacci, Robert Tykot, Antonella Casoli, Jaume Bertranpetit, Carles Lalueza-Fox, Giorgio Bertorelle, Guido Barbujani.   

Abstract

We sampled teeth from 53 ancient Sardinian (Nuragic) individuals who lived in the Late Bronze Age and Iron Age, between 3,430 and 2,700 years ago. After eliminating the samples that, in preliminary biochemical tests, did not show a high probability to yield reproducible results, we obtained 23 sequences of the mitochondrial DNA control region, which were associated to haplogroups by comparison with a dataset of modern sequences. The Nuragic samples show a remarkably low genetic diversity, comparable to that observed in ancient Iberians, but much lower than among the Etruscans. Most of these sequences have exact matches in two modern Sardinian populations, supporting a clear genealogical continuity from the Late Bronze Age up to current times. The Nuragic populations appear to be part of a large and geographically unstructured cluster of modern European populations, thus making it difficult to infer their evolutionary relationships. However, the low levels of genetic diversity, both within and among ancient samples, as opposed to the sharp differences among modern Sardinian samples, support the hypothesis of the expansion of a small group of maternally related individuals, and of comparatively recent differentiation of the Sardinian gene pools.

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Year:  2007        PMID: 17629747     DOI: 10.1007/s00439-007-0403-6

Source DB:  PubMed          Journal:  Hum Genet        ISSN: 0340-6717            Impact factor:   4.132


  33 in total

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Journal:  Am J Hum Genet       Date:  2004-03-10       Impact factor: 11.025

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8.  Uniparental markers in Italy reveal a sex-biased genetic structure and different historical strata.

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10.  Population genomic analysis of ancient and modern genomes yields new insights into the genetic ancestry of the Tyrolean Iceman and the genetic structure of Europe.

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