Ayca Omrak
Stockholm University
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Publication
Featured researches published by Ayca Omrak.
Science | 2014
Pontus Skoglund; Helena Malmström; Ayca Omrak; Maanasa Raghavan; Cristina Valdiosera; Torsten Günther; Per Hall; Kristiina Tambets; Jueri Parik; Karl-Göran Sjögren; Jan Apel; Jan Storå; Anders Götherström; Mattias Jakobsson
Hunters and Farmers The Neolithic period in Europe saw the transition from a hunter-gatherer lifestyle to farming. Previous genetic analyses have suggested that hunter-gatherers were replaced by immigrant farmers. Skoglund et al. (p. 747, published online 24 April) sequenced one Mesolithic and nine Neolithic Swedish individuals to examine the transition from hunter-gatherers to farmers. Substantial genetic differentiation was observed between hunter-gatherers and farmers: There was lower genetic diversity within the hunter-gatherers and gene flow from the hunter-gatherers into the farmers but not vice versa. Population dynamics of Scandinavian Mesolithic and Neolithic hunter-gatherers differ from those of early farmers. Prehistoric population structure associated with the transition to an agricultural lifestyle in Europe remains a contentious idea. Population-genomic data from 11 Scandinavian Stone Age human remains suggest that hunter-gatherers had lower genetic diversity than that of farmers. Despite their close geographical proximity, the genetic differentiation between the two Stone Age groups was greater than that observed among extant European populations. Additionally, the Scandinavian Neolithic farmers exhibited a greater degree of hunter-gatherer–related admixture than that of the Tyrolean Iceman, who also originated from a farming context. In contrast, Scandinavian hunter-gatherers displayed no significant evidence of introgression from farmers. Our findings suggest that Stone Age foraging groups were historically in low numbers, likely owing to oscillating living conditions or restricted carrying capacity, and that they were partially incorporated into expanding farming groups.
Current Biology | 2016
Ayca Omrak; Torsten Günther; Cristina Valdiosera; Emma Svensson; Helena Malmström; Henrike Kiesewetter; William Aylward; Jan Storå; Mattias Jakobsson; Anders Götherström
Anatolia and the Near East have long been recognized as the epicenter of the Neolithic expansion through archaeological evidence. Recent archaeogenetic studies on Neolithic European human remains have shown that the Neolithic expansion in Europe was driven westward and northward by migration from a supposed Near Eastern origin [1-5]. However, this expansion and the establishment of numerous culture complexes in the Aegean and Balkans did not occur until 8,500 before present (BP), over 2,000 years after the initial settlements in the Neolithic core area [6-9]. We present ancient genome-wide sequence data from 6,700-year-old human remains excavated from a Neolithic context in Kumtepe, located in northwestern Anatolia near the well-known (and younger) site Troy [10]. Kumtepe is one of the settlements that emerged around 7,000 BP, after the initial expansion wave brought Neolithic practices to Europe. We show that this individual displays genetic similarities to the early European Neolithic gene pool and modern-day Sardinians, as well as a genetic affinity to modern-day populations from the Near East and the Caucasus. Furthermore, modern-day Anatolians carry signatures of several admixture events from different populations that have diluted this early Neolithic farmer component, explaining why modern-day Sardinian populations, instead of modern-day Anatolian populations, are genetically more similar to the people that drove the Neolithic expansion into Europe. Anatolias central geographic location appears to have served as a connecting point, allowing a complex contact network with other areas of the Near East and Europe throughout, and after, the Neolithic.
Current Biology | 2016
Gülşah Merve Kılınç; Ayca Omrak; Füsun Özer; Torsten Günther; Ali Metin Büyükkarakaya; Erhan Bıçakçı; Douglas Baird; Handan Melike Dönertaş; Ayshin Ghalichi; Reyhan Yaka; Dilek Koptekin; Sinan Can Açan; Poorya Parvizi; Maja Krzewińska; Evangelia Daskalaki; Eren Yüncü; Nihan Dilşad Dağtaş; Andrew Fairbairn; Jessica Pearson; Gökhan Mustafaoğlu; Yılmaz Selim Erdal; Yasin Gökhan Çakan; İnci Togan; Jan Storå; Mattias Jakobsson; Anders Götherström
Summary The archaeological documentation of the development of sedentary farming societies in Anatolia is not yet mirrored by a genetic understanding of the human populations involved, in contrast to the spread of farming in Europe [1, 2, 3]. Sedentary farming communities emerged in parts of the Fertile Crescent during the tenth millennium and early ninth millennium calibrated (cal) BC and had appeared in central Anatolia by 8300 cal BC [4]. Farming spread into west Anatolia by the early seventh millennium cal BC and quasi-synchronously into Europe, although the timing and process of this movement remain unclear. Using genome sequence data that we generated from nine central Anatolian Neolithic individuals, we studied the transition period from early Aceramic (Pre-Pottery) to the later Pottery Neolithic, when farming expanded west of the Fertile Crescent. We find that genetic diversity in the earliest farmers was conspicuously low, on a par with European foraging groups. With the advent of the Pottery Neolithic, genetic variation within societies reached levels later found in early European farmers. Our results confirm that the earliest Neolithic central Anatolians belonged to the same gene pool as the first Neolithic migrants spreading into Europe. Further, genetic affinities between later Anatolian farmers and fourth to third millennium BC Chalcolithic south Europeans suggest an additional wave of Anatolian migrants, after the initial Neolithic spread but before the Yamnaya-related migrations. We propose that the earliest farming societies demographically resembled foragers and that only after regional gene flow and rising heterogeneity did the farming population expansions into Europe occur.
PLOS Biology | 2018
Torsten Günther; Helena Malmström; Emma Svensson; Ayca Omrak; Federico Sánchez-Quinto; Gülşah Merve Kılınç; Mihai G. Netea; Anders Götherström; Mattias Jakobsson
Scandinavia was one of the last geographic areas in Europe to become habitable for humans after the Last Glacial Maximum (LGM). However, the routes and genetic composition of these postglacial migrants remain unclear. We sequenced the genomes, up to 57× coverage, of seven hunter-gatherers excavated across Scandinavia and dated from 9,500–6,000 years before present (BP). Surprisingly, among the Scandinavian Mesolithic individuals, the genetic data display an east–west genetic gradient that opposes the pattern seen in other parts of Mesolithic Europe. Our results suggest two different early postglacial migrations into Scandinavia: initially from the south, and later, from the northeast. The latter followed the ice-free Norwegian north Atlantic coast, along which novel and advanced pressure-blade stone-tool techniques may have spread. These two groups met and mixed in Scandinavia, creating a genetically diverse population, which shows patterns of genetic adaptation to high latitude environments. These potential adaptations include high frequencies of low pigmentation variants and a gene region associated with physical performance, which shows strong continuity into modern-day northern Europeans.
Schweizer Archiv Fur Tierheilkunde | 2014
Emma Svensson; S. Hasler; M. Nussbaumer; A. Rehazek; Ayca Omrak; Anders Götherström
This study deals with genetic analyses of an assemblage of mediaeval (13th century) cattle metapodials from Bern that had previously been osteometrically examined regarding sex, shape and wither height. The results from the genetic sexing of these small (height 100 to 120 cm) cattle correlate well with the osteometric interpretations. Some few exceptions we interpreted as cows used as draft animals with stouter bones and thus osteometrically determined as males. Two morphologically different groups of cow metatarsals however, we took as proof of the historical fact that Bern relied on livestock from different geographical origins: the towns vicinity and the alpine pastures with their favourable grazing conditions. It was not possible to distinguish them genetically. An analysis of one single nucleotide polymorphism (SNP) in the melanocortin receptor 1 (MC1R) showed that predominant coat colour most likely was red-brown. Furthermore, an analysis of the SNP in the Y-chromosomal intron UTY19 that divide modern taurine cattle in two major haplogroups (Y1 and Y2) showed that the mediaeval cattle belonged to the haplogroup Y2 with one single exception of a Y1.
bioRxiv | 2017
Torsten Günther; Helena Malmström; Emma Svensson; Ayca Omrak; Federico Sánchez-Quinto; Gülşah Merve Kılınç; Maja Krzewińska; Gunilla Eriksson; Magdalena Fraser; Hanna Edlund; Arielle R. Munters; Alexandra Coutinho; Luciana G. Simões; Mário Vicente; Anders Sjölander; Berit J. Sellevold; Roger Jørgensen; Peter Claes; Mark D. Shriver; Cristina Valdiosera; Mihai G. Netea; Jan Apel; Kerstin Lidén; Birgitte Skar; Jan Storå; Anders Götherström; Mattias Jakobsson
Scandinavia was one of the last geographic areas in Europe to become habitable for humans after the last glaciation. However, the origin(s) of the first colonizers and their migration routes remain unclear. We sequenced the genomes, up to 57x coverage, of seven hunter-gatherers excavated across Scandinavia and dated to 9,500-6,000 years before present. Surprisingly, among the Scandinavian Mesolithic individuals, the genetic data display an east-west genetic gradient that opposes the pattern seen in other parts of Mesolithic Europe. This result suggests that Scandinavia was initially colonized following two different routes: one from the south, the other from the northeast. The latter followed the ice-free Norwegian north Atlantic coast, along which novel and advanced pressure-blade stone-tool techniques may have spread. These two groups met and mixed in Scandinavia, creating a genetically diverse population, which shows patterns of genetic adaptation to high latitude environments. These adaptations include high frequencies of low pigmentation variants and a gene-region associated with physical performance, which shows strong continuity into modern-day northern Europeans.
Current Biology | 2018
Maja Krzewińska; Anna Kjellström; Torsten Günther; Charlotte Hedenstierna-Jonson; Torun Zachrisson; Ayca Omrak; Reyhan Yaka; Gülşah Merve Kılınç; Veronica Sobrado; Jane Evans; Corina Knipper; Mattias Jakobsson; Jan Storå; Anders Götherström
The impact of human mobility on the northern European urban populations during the Viking and Early Middle Ages and its repercussions in Scandinavia itself are still largely unexplored. Our study of the demographics in the final phase of the Viking era is the first comprehensive multidisciplinary investigation that includes genetics, isotopes, archaeology, and osteology on a larger scale. This early Christian dataset is particularly important as the earlier common pagan burial tradition during the Iron Age was cremation, hindering large-scale DNA analyses. We present genome-wide sequence data from 23 individuals from the 10th to 12th century Swedish town of Sigtuna. The data revealed high genetic diversity among the early urban residents. The observed variation exceeds the genetic diversity in distinct modern-day and Iron Age groups of central and northern Europe. Strontium isotope data suggest mixed local and non-local origin of the townspeople. Our results uncover the social system underlying the urbanization process of the Viking World of which mobility was an intricate part and was comparable between males and females. The inhabitants of Sigtuna were heterogeneous in their genetic affinities, probably reflecting both close and distant connections through an established network, confirming that early urbanization processes in northern Europe were driven by migration.
Current Biology | 2015
Eleftheria Palkopoulou; Swapan Mallick; Pontus Skoglund; Jacob Enk; Nadin Rohland; Heng Li; Ayca Omrak; Sergey Vartanyan; Hendrik N. Poinar; Anders Götherström; David Reich; Love Dalén
American Journal of Physical Anthropology | 2016
Gülşah Merve Kılınç; Füsun Özer; Ayca Omrak; Reyhan Yaka; Melike Donertas; Nihan Dilşad Dağtaş; Eren Yüncü; Dilek Koptekin; Ali Metin Büyükkarakaya; Sinan Can Açan; Can Alkan; Ian Hodder; Scott D. Haddow; Christopher J. Knüsel; Clark Spencer Larsen; Yılmaz Selim Erdal; Erhan Bıçakçı; Douglas Baird; Mattias Jakobsson; İnci Togan; Anders Götherström
Archive | 2014
Eleftheria Palkopoulou; Swapan Mallick; Pontus Skoglund; Jacob Enk; Nadin Rohland; Heng Li; Ayca Omrak; Sergey Vartanyan; Hendrik N. Poinar; Anders Götherström; David Reich; Love Dalén