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Showing 1–7 of 7 results
Advanced filters: Author: Michaela Lucci Clear advanced filters
  • The authors generate genomic data from 30 ancient human individuals, spanning the Bronze Age and the Iron Age from four archaeological sites in the Mediterranean (located in Tunisia, Sardinia and central Italy). Comparing with additional published ancient genomes, they generate insights into mobility and admixture in this interconnected region

    • Hannah M. Moots
    • Margaret Antonio
    • Ron Pinhasi
    Research
    Nature Ecology & Evolution
    Volume: 7, P: 1515-1524
  • Ancient DNA from the eastern Maghreb (Tunisia and Algeria) dating between 15,000 and 6,000 years ago shows that this region was far less affected by external gene flow than the rest of the Neolithic Mediterranean, including not only Europe but also the western Maghreb (Morocco).

    • Mark Lipson
    • Harald Ringbauer
    • David Reich
    Research
    Nature
    Volume: 641, P: 925-931
  • Levantine Phoenicians made little genetic contribution to Punic settlements in the central and western Mediterranean between the sixth and second centuries bce; instead, the Punic people derived most of their ancestry from a genetic profile similar to that of Sicily and the Aegean, with notable contributions from North Africa as well.

    • Harald Ringbauer
    • Ayelet Salman-Minkov
    • David Reich
    Research
    Nature
    Volume: 643, P: 139-147
  • The history of human populations in the islands of the central and western Mediterranean is poorly understood. Here, the authors generate ancient-DNA data from the Balearic Islands, Sicily and Sardinia, and estimate the level and timing of steppe pastoralist, Iranian and North African ancestries in these populations.

    • Daniel M. Fernandes
    • Alissa Mittnik
    • David Reich
    Research
    Nature Ecology & Evolution
    Volume: 4, P: 334-345
  • Ancient DNA reveals genetic differences between stone-tool users and people associated with ceramic technology in the Caribbean and provides substantially lower estimates of population sizes in the region before European contact.

    • Daniel M. Fernandes
    • Kendra A. Sirak
    • David Reich
    Research
    Nature
    Volume: 590, P: 103-110
  • Genomic studies of Heliconius butterflies provide evidence that Heliconius elevatus is a hybrid species, and that its speciation was driven by introgression of traits from Heliconius melpomene into the other parent, an ancestor of Heliconius pardalinus.

    • Neil Rosser
    • Fernando Seixas
    • Kanchon K. Dasmahapatra
    ResearchOpen Access
    Nature
    Volume: 628, P: 811-817