Anna Szécsényi-Nagy
Hungarian Academy of Sciences
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Featured researches published by Anna Szécsényi-Nagy.
Nature | 2015
Wolfgang Haak; Iosif Lazaridis; Nick Patterson; Nadin Rohland; Swapan Mallick; Bastien Llamas; Guido Brandt; Eadaoin Harney; Kristin Stewardson; Qiaomei Fu; Alissa Mittnik; Eszter Bánffy; Christos Economou; Michael Francken; Susanne Friederich; Rafael Garrido Pena; Fredrik Hallgren; Valery Khartanovich; Aleksandr Khokhlov; Michael Kunst; Pavel Kuznetsov; Harald Meller; Oleg Mochalov; Vayacheslav Moiseyev; Nicole Nicklisch; Sandra Pichler; Roberto Risch; Manuel Ángel Rojo Guerra; Christina Roth; Anna Szécsényi-Nagy
We generated genome-wide data from 69 Europeans who lived between 8,000–3,000 years ago by enriching ancient DNA libraries for a target set of almost 400,000 polymorphisms. Enrichment of these positions decreases the sequencing required for genome-wide ancient DNA analysis by a median of around 250-fold, allowing us to study an order of magnitude more individuals than previous studies and to obtain new insights about the past. We show that the populations of Western and Far Eastern Europe followed opposite trajectories between 8,000–5,000 years ago. At the beginning of the Neolithic period in Europe, ∼8,000–7,000 years ago, closely related groups of early farmers appeared in Germany, Hungary and Spain, different from indigenous hunter-gatherers, whereas Russia was inhabited by a distinctive population of hunter-gatherers with high affinity to a ∼24,000-year-old Siberian. By ∼6,000–5,000 years ago, farmers throughout much of Europe had more hunter-gatherer ancestry than their predecessors, but in Russia, the Yamnaya steppe herders of this time were descended not only from the preceding eastern European hunter-gatherers, but also from a population of Near Eastern ancestry. Western and Eastern Europe came into contact ∼4,500 years ago, as the Late Neolithic Corded Ware people from Germany traced ∼75% of their ancestry to the Yamnaya, documenting a massive migration into the heartland of Europe from its eastern periphery. This steppe ancestry persisted in all sampled central Europeans until at least ∼3,000 years ago, and is ubiquitous in present-day Europeans. These results provide support for a steppe origin of at least some of the Indo-European languages of Europe.
Science | 2013
Guido Brandt; Wolfgang Haak; Christina J. Adler; Christina Roth; Anna Szécsényi-Nagy; Sarah Karimnia; Sabine Möller-Rieker; Harald Meller; Robert Ganslmeier; Susanne Friederich; Veit Dresely; Nicole Nicklisch; Joseph K. Pickrell; Frank Sirocko; David Reich; Alan Cooper; Kurt W. Alt
The Origins of Europeans To investigate the genetic origins of modern Europeans, Brandt et al. (p. 257) examined ancient mitochondrial DNA (mtDNA) and were able to identify genetic differences in 364 Central Europeans spanning the early Neolithic to the Early Bronze Age. Observed changes in mitochondrial haplotypes corresponded with hypothesized human migration across Eurasia and revealed the complexity of the demographic changes and evidence of a Late Neolithic origin for the European mtDNA gene pool. This transect through time reveals four key population events associated with well-known archaeological cultures, which involved genetic influx into Central Europe from various directions at various times. Mitochondrial DNA profiles of 364 prehistoric people reveal human demography and migration patterns in Neolithic Germany. The processes that shaped modern European mitochondrial DNA (mtDNA) variation remain unclear. The initial peopling by Palaeolithic hunter-gatherers ~42,000 years ago and the immigration of Neolithic farmers into Europe ~8000 years ago appear to have played important roles but do not explain present-day mtDNA diversity. We generated mtDNA profiles of 364 individuals from prehistoric cultures in Central Europe to perform a chronological study, spanning the Early Neolithic to the Early Bronze Age (5500 to 1550 calibrated years before the common era). We used this transect through time to identify four marked shifts in genetic composition during the Neolithic period, revealing a key role for Late Neolithic cultures in shaping modern Central European genetic diversity.
bioRxiv | 2015
Anna Szécsényi-Nagy; Guido Brandt; Wolfgang Haak; Victoria Keerl; János Jakucs; Sabine Möller-Rieker; Kitti Köhler; Balázs Gusztáv Mende; Krisztián Oross; Tibor Marton; Anett Osztás; Viktória Kiss; Marc Fecher; György Pálfi; Erika Molnár; Katalin Sebők; András Czene; Tibor Paluch; Mario Šlaus; Mario Novak; Nives Pećina-Šlaus; Brigitta Ősz; Vanda Voicsek; Gábor A. Tóth; Bernd Kromer; Eszter Bánffy; Kurt W. Alt
Farming was established in Central Europe by the Linearbandkeramik culture (LBK), a well-investigated archaeological horizon, which emerged in the Carpathian Basin, in todays Hungary. However, the genetic background of the LBK genesis is yet unclear. Here we present 9 Y chromosomal and 84 mitochondrial DNA profiles from Mesolithic, Neolithic Starčevo and LBK sites (seventh/sixth millennia BC) from the Carpathian Basin and southeastern Europe. We detect genetic continuity of both maternal and paternal elements during the initial spread of agriculture, and confirm the substantial genetic impact of early southeastern European and Carpathian Basin farming cultures on Central European populations of the sixth–fourth millennia BC. Comprehensive Y chromosomal and mitochondrial DNA population genetic analyses demonstrate a clear affinity of the early farmers to the modern Near East and Caucasus, tracing the expansion from that region through southeastern Europe and the Carpathian Basin into Central Europe. However, our results also reveal contrasting patterns for male and female genetic diversity in the European Neolithic, suggesting a system of patrilineal descent and patrilocal residential rules among the early farmers.
Journal of Human Evolution | 2015
Guido Brandt; Anna Szécsényi-Nagy; Christina Roth; Kurt W. Alt; Wolfgang Haak
The number of ancient human DNA studies has drastically increased in recent years. This results in a substantial record of mitochondrial sequences available from many prehistoric sites across Western Eurasia, but also growing Y-chromosome and autosomal sequence data. We review the current state of research with specific emphasis on the Holocene population events that likely have shaped the present-day genetic variation in Europe. We reconcile observations from the genetic data with hypotheses about the peopling and settlement history from anthropology and archaeology for various key regions, and also discuss the data in light of evidence from related disciplines, such as modern human genetics, climatology and linguistics.
Nature | 2017
Mark Lipson; Anna Szécsényi-Nagy; Swapan Mallick; Annamária Pósa; Balázs Stégmár; Victoria Keerl; Nadin Rohland; Kristin Stewardson; Matthew Ferry; Megan Michel; Jonas Oppenheimer; Nasreen Broomandkhoshbacht; Eadaoin Harney; Bastien Llamas; Balázs Gusztáv Mende; Kitti Köhler; Krisztián Oross; Mária Bondár; Tibor Marton; Anett Osztás; János Jakucs; Tibor Paluch; Ferenc Horváth; Piroska Csengeri; Judit Koós; Katalin Sebők; Alexandra Anders; Pál Raczky; Judit Regenye; Judit P. Barna
Ancient DNA studies have established that Neolithic European populations were descended from Anatolian migrants who received a limited amount of admixture from resident hunter-gatherers. Many open questions remain, however, about the spatial and temporal dynamics of population interactions and admixture during the Neolithic period. Here we investigate the population dynamics of Neolithization across Europe using a high-resolution genome-wide ancient DNA dataset with a total of 180 samples, of which 130 are newly reported here, from the Neolithic and Chalcolithic periods of Hungary (6000–2900 bc, n = 100), Germany (5500–3000 bc, n = 42) and Spain (5500–2200 bc, n = 38). We find that genetic diversity was shaped predominantly by local processes, with varied sources and proportions of hunter-gatherer ancestry among the three regions and through time. Admixture between groups with different ancestry profiles was pervasive and resulted in observable population transformation across almost all cultural transitions. Our results shed new light on the ways in which gene flow reshaped European populations throughout the Neolithic period and demonstrate the potential of time-series-based sampling and modelling approaches to elucidate multiple dimensions of historical population interactions.
PLOS ONE | 2016
Kurt W. Alt; Stephanie Zesch; Rafael Garrido-Pena; Corina Knipper; Anna Szécsényi-Nagy; Christina Roth; Cristina Tejedor-Rodríguez; Petra Held; Íñigo García-Martínez-de-Lagrán; Denise Navitainuck; Héctor Arcusa Magallón; Manuel A. Rojo-Guerra
The analysis of the human remains from the megalithic tomb at Alto de Reinoso represents the widest integrative study of a Neolithic collective burial in Spain. Combining archaeology, osteology, molecular genetics and stable isotope analysis (87Sr/86Sr, δ15N, δ13C) it provides a wealth of information on the minimum number of individuals, age, sex, body height, pathologies, mitochondrial DNA profiles, kinship relations, mobility, and diet. The grave was in use for approximately one hundred years around 3700 cal BC, thus dating from the Late Neolithic of the Iberian chronology. At the bottom of the collective tomb, six complete and six partial skeletons lay in anatomically correct positions. Above them, further bodies represented a subsequent and different use of the tomb, with almost all of the skeletons exhibiting signs of manipulation such as missing skeletal parts, especially skulls. The megalithic monument comprised at least 47 individuals, including males, females, and subadults, although children aged 0–6 years were underrepresented. The skeletal remains exhibited a moderate number of pathologies, such as degenerative joint diseases, healed fractures, cranial trauma, and a low intensity of caries. The mitochondrial DNA profiles revealed a pattern pointing to a closely related local community with matrilineal kinship patterns. In some cases adjacent individuals in the bottom layer showed familial relationships. According to their strontium isotope ratios, only a few individuals were likely to have spent their early childhood in a different geological environment, whilst the majority of individuals grew up locally. Carbon and nitrogen isotope analysis, which was undertaken to reconstruct the dietary habits, indicated that this was a homogeneous group with egalitarian access to food. Cereals and small ruminants were the principal sources of nutrition. These data fit in well with a lifestyle typical of sedentary farming populations in the Spanish Meseta during this period of the Neolithic.
PLOS ONE | 2016
Veronika Csákyová; Anna Szécsényi-Nagy; Aranka Csősz; Melinda Nagy; Gabriel Fusek; Miroslav Bauer; Balázs Gusztáv Mende; Pavol Makovický; Mária Bauerová
The genetic composition of the medieval populations of Central Europe has been poorly investigated to date. In particular, the region of modern-day Slovakia is a blank spot in archaeogenetic research. This paper reports the study of mitochondrial DNA (mtDNA) in ancient samples from the 9th–12th centuries originating from the cemeteries discovered in Nitra-Šindolka and Čakajovce, located in western Slovakia (Central Europe). This geographical region is interesting to study because its medieval multi-ethnic population lived in the so-called contact zone of the territory of the Great Moravian and later Hungarian state formations. We described 16 different mtDNA haplotypes in 19 individuals, which belong to the most widespread European mtDNA haplogroups: H, J, T, U and R0. Using comparative statistical and population genetic analyses, we showed the differentiation of the European gene pool in the medieval period. We also demonstrated the heterogeneous genetic characteristics of the investigated population and its affinity to the populations of modern Europe.
Physics of the Earth and Planetary Interiors | 2016
Corina Knipper; Matthias Fragata; Nicole Nicklisch; Angelina Siebert; Anna Szécsényi-Nagy; Vera Hubensack; Carola Metzner-Nebelsick; Harald Meller; Kurt W. Alt
OBJECTIVES Inhumations in so-called settlement pits and multiple interments are subordinate burial practices of the Early Bronze Age Únětice culture in central Germany (2200-1700/1650 BC). The majority of the Únětice population was entombed as single inhumations in rectangular grave pits with a normative position of the body. The goal of the study was to test archaeological hypotheses that the deviant burials may represent socially distinct or nonlocal individuals. MATERIALS AND METHODS The study comprised up to two teeth and one bone each of 74 human individuals from eight sites and faunal comparative samples. The inhumations included regular, deviant burials in so-called settlement or storage pits, and multiple burials. We investigated radiogenic strontium isotope compositions of tooth enamel ((87) Sr/(86) Sr) and light stable isotope ratios of carbon and nitrogen of bone collagen (δ(13) C, δ(15) N) aiming at the disclosure of residential changes and dietary patterns. RESULTS Site-specific strontium isotope data ranges mirror different geological properties including calcareous bedrock, loess, and glacial till. Independent from burial types, they disclose low portions of nonlocal individuals of up to some 20% at the individual sites. The light stable isotope ratios of burials in settlement pits and rectangular graves overlap widely and indicate highly similar dietary habits. DISCUSSION The analytical results let to conclude that inhumations in settlement pits and multiple burials were two of the manifold burial practices of the Early Bronze Age. The selection criteria of the individuals for the different forms of inhumation remained undisclosed.
American Journal of Physical Anthropology | 2016
Corina Knipper; Matthias Fragata; Nicole Nicklisch; Angelina Siebert; Anna Szécsényi-Nagy; Vera Hubensack; Carola Metzner-Nebelsick; Harald Meller; Kurt W. Alt
OBJECTIVES Inhumations in so-called settlement pits and multiple interments are subordinate burial practices of the Early Bronze Age Únětice culture in central Germany (2200-1700/1650 BC). The majority of the Únětice population was entombed as single inhumations in rectangular grave pits with a normative position of the body. The goal of the study was to test archaeological hypotheses that the deviant burials may represent socially distinct or nonlocal individuals. MATERIALS AND METHODS The study comprised up to two teeth and one bone each of 74 human individuals from eight sites and faunal comparative samples. The inhumations included regular, deviant burials in so-called settlement or storage pits, and multiple burials. We investigated radiogenic strontium isotope compositions of tooth enamel ((87) Sr/(86) Sr) and light stable isotope ratios of carbon and nitrogen of bone collagen (δ(13) C, δ(15) N) aiming at the disclosure of residential changes and dietary patterns. RESULTS Site-specific strontium isotope data ranges mirror different geological properties including calcareous bedrock, loess, and glacial till. Independent from burial types, they disclose low portions of nonlocal individuals of up to some 20% at the individual sites. The light stable isotope ratios of burials in settlement pits and rectangular graves overlap widely and indicate highly similar dietary habits. DISCUSSION The analytical results let to conclude that inhumations in settlement pits and multiple burials were two of the manifold burial practices of the Early Bronze Age. The selection criteria of the individuals for the different forms of inhumation remained undisclosed.
Scientific Reports | 2017
Anna Szécsényi-Nagy; Christina Roth; Guido Brandt; Cristina Rihuete-Herrada; Cristina Tejedor-Rodríguez; Petra Held; Íñigo García-Martínez-de-Lagrán; Héctor Arcusa Magallón; Stephanie Zesch; Corina Knipper; Eszter Bánffy; Susanne Friederich; Harald Meller; Primitiva Bueno Ramírez; Rosa Barroso Bermejo; Rodrigo de Balbín Behrmann; Ana M. Herrero-Corral; Raúl Flores Fernández; Carmen Alonso Fernández; Javier Jiménez Echevarría; Laura Rindlisbacher; Camila Oliart; María-Inés Fregeiro; Ignacio Soriano; Oriol Vicente; Rafael Micó; Vicente Lull; Jorge Soler Díaz; Juan Antonio López Padilla; Consuelo Roca de Togores Muñoz
Agriculture first reached the Iberian Peninsula around 5700 BCE. However, little is known about the genetic structure and changes of prehistoric populations in different geographic areas of Iberia. In our study, we focus on the maternal genetic makeup of the Neolithic (~ 5500–3000 BCE), Chalcolithic (~ 3000–2200 BCE) and Early Bronze Age (~ 2200–1500 BCE). We report ancient mitochondrial DNA results of 213 individuals (151 HVS-I sequences) from the northeast, central, southeast and southwest regions and thus on the largest archaeogenetic dataset from the Peninsula to date. Similar to other parts of Europe, we observe a discontinuity between hunter-gatherers and the first farmers of the Neolithic. During the subsequent periods, we detect regional continuity of Early Neolithic lineages across Iberia, however the genetic contribution of hunter-gatherers is generally higher than in other parts of Europe and varies regionally. In contrast to ancient DNA findings from Central Europe, we do not observe a major turnover in the mtDNA record of the Iberian Late Chalcolithic and Early Bronze Age, suggesting that the population history of the Iberian Peninsula is distinct in character.