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Biology subjects

Borbely, N.

Publications and source records attributed to Borbely, N..

3 recordsLinked to original sources

Ancient genomes reveal Avar-Hungarian transformations in the 9-10th centuries CE in the Carpathian Basin

During the Early Medieval period, the Carpathian Basin witnessed significant demographic shifts, notably under the Avar dominance for approximately 250 years, followed by the settlement of early Hungarians in the region during the late 9th century CE. This study presents the genetic analysis of 296 ancient samples, including 103 shotgun-sequenced genomes, from present-day Western Hungary. By employing identity-by-descent (IBD) segment sharing networks, this research offers detailed insights into the population structure and dynamics of the region from the 5th to the 11th centuries CE, with specific focus on certain microregions. Our evaluations reveal spatially different histories in Transdanubia even between communities in close geographical proximity, highlighting the importance of dense sampling and analyses. Our findings highlight extensive homogenisation and reorganization processes, discontinuities between Hun, Avar, and Conquest period immigrant groups, alongside the spread and integration of ancestry related to the Hungarian conquerors. TeaserGenetic formation of medieval Hungary, discontinuity between immigrant groups in the first millennium CE

genomics↗

Genomic refugium of pre-domestication lineages in the Bronze Age Carpathian Basin

Horse domestication is a key element in history for its impact on human mobility and warfare. There is clear evidence for horse control from the beginning of the 2nd millennium BCE in the Carpathian Basin, when antler cheekpieces appear in the archaeological record mostly in the eastern areas. Previous archaeogenomic studies also revealed that the spread of the ancestors of modern day horses began at this time period, but the details of this event in Bronze Age Europe is yet to be uncovered. In this study we report a new shotgun genome ([~]0.9x coverage) of a Middle Bronze Age horse (radiocarbon dated to 1740-1630 cal. BCE) from Tompa site, southern Hungary, along with six mitochondrial genomes from various sites from Late Copper Age to Early Bronze Age Western Hungary. Our results reveal a strong bottleneck among pre-domestication Carpathian Basin horses and delayed DOM2 introduction into the region compared to the surrounding areas. The population size reduction was most probably due to human mediated loss of natural habitat, but the practice of horsekeeping after the turn of the 2nd millennium BCE can not be excluded based on the genomic data. Our results provide a complex history for horse domestication in the Central-European region, highlighting the need for further research to fully understand the extent and nature of human-horse interactions in this area throughout prehistory.

evolutionary biology↗

High Coverage Mitogenomes and Y-Chromosomal Typing Reveal Ancient Lineages in the Modern-day Szekely Population in Romania

Here we present 115 whole mitogenomes and 92 Y-chromosomal STR and SNP profiles from a Hungarian ethnic group, the Szekelys (in Romanian: Secuii, in German: Sekler) living in southeast Transylvania (Romania). The Szekelys can be traced back to the 12th century in the region, and numerous scientific theories exist as to their origin. We carefully selected sample providers that had local ancestors inhabiting small villages in the area of Odorheiu Secuiesc/Szekelyudvarhely in Romania. The results of our research and the reported data signify a qualitative leap compared to previous studies, since complete mitochondrial DNA sequences and Y-chromosomal data containing 23 STRs have not been available from the region until now. We evaluated the results with population genetic and phylogenetic methods, in the context of the modern and ancient populations that are either geographically or historically related to the Szekelys. Our results demonstrate a predominantly local uniparental make-up of the population that also indicates limited admixture with neighbouring populations. Phylogenetic analyses confirmed the presumed eastern origin of certain maternal (A, C, D) and paternal (Q, R1a) lineages and, in some cases, they could also be linked to ancient DNA data from Migration Period (5th-9th centuries AD) and Hungarian Conquest Period (10th century AD) populations.

genetics↗