6533b826fe1ef96bd1283d4f
RESEARCH PRODUCT
Maternal DNA lineages at the gate of Europe in the 10th century AD
Zeno Karl PinterZeno Karl PinterMartina LariCristina MirceaOctavian PopescuStefania VaiClaudia RaduBeatrice KelemenAlessandra ModiIoana RusuVitalie BodolicăClaudia UrduziaDavid CaramelliMontserrat HervellaCătălin DobrinescuElena Pillisubject
0301 basic medicineEuropean PeopleremainsHeredityPopulation geneticslcsh:Medicinepopulation030105 genetics & heredityBiochemistryHaplogroupGeographical Locationscontaminationmitochondrial-dnaEthnicitieslcsh:SciencePhylogenymtDNA control regionPrincipal Component Analysiseducation.field_of_studyMultidisciplinaryGeographyHigh-Throughput Nucleotide SequencingPaleogeneticscontrol regionMitochondrial DNAEuropeNucleic acidsGenetic MappingPhylogeographyGeographyArchaeologyBiogeographyRomanian PeopleGenetic structurehistoryResearch ArticleMitochondrial DNAancient DNA mitochondrial DNA population genetics Romania Capidava medieval necropolisForms of DNAPopulationNear-EasternDNA MitochondrialBone and BonesWhite Peoplediversity03 medical and health sciencesgenetic affinitiesGeneticsHumanseducationEvolutionary BiologyBiology and life sciencesPopulation BiologyRomaniaEcology and Environmental Scienceslcsh:RPaleontologySequence Analysis DNADNAsequenceHistory MedievalPhylogeographyGenetics Population030104 developmental biologyHaplotypesEvolutionary biologyPeople and PlacesEarth SciencesHaplogroupsPopulation Groupingslcsh:QPaleogeneticsPopulation Geneticsdescription
Given the paucity of archaeogenetic data available for medieval European populations in comparison to other historical periods, the genetic landscape of this age appears as a puzzle of dispersed, small, known pieces. In particular, Southeastern Europe has been scarcely investigated to date. In this paper, we report the study of mitochondrial DNA in 10th century AD human samples from Capidava necropolis, located in Dobruja (Southeastern Romania, Southeastern Europe). This geographical region is particularly interesting because of the extensive population flux following diverse migration routes, and the complex interactions between distinct population groups during the medieval period. We successfully amplified and typed the mitochondrial control region of 10 individuals. For five of them, we also reconstructed the complete mitochondrial genomes using hybridization-based DNA capture combined with Next Generation Sequencing. We have portrayed the genetic structure of the Capidava medieval population, represented by 10 individuals displaying 8 haplotypes (U5a1c2a, V1a, R0a2'3, H1, U3a, N9a9, H5e1a1, and H13a1a3). Remarkable for this site is the presence of both Central Asiatic (N9a) and common European mtDNA haplotypes, establishing Capidava as a point of convergence between East and West. The distribution of mtDNA lineages in the necropolis highlighted the existence of two groups of two individuals with close maternal relationships as they share the same haplotypes. We also sketch, using comparative statistical and population genetic analyses, the genetic relationships between the investigated dataset and other medieval and modern Eurasian populations. This work was supported by the Executive Unit for Financing Higher Education, Research, Development and Innovation (UEFISCDI), project number PN-II-PT-PCCA-2011-3.1-1153, contract number 229/2013: "Genetic Evolution: New Evidences for the Study of Interconnected Structures. A Biomolecular Journey around the Carpathians from Ancient to Medieval Times". M.N. was supported by a Basque Government grand to the research group (IT 1138-16). I.R.'s research internship at the University of Florence was supported by the FONDUL SOCIAL EUROPEAN, Programul Operational Sectorial Dezvoltarea Resurselor Umane 2007-2013, "Calitate, excelenta, mobilitate transnationala in cercetarea doctorala", POSDRU/187/1.5/S/155383. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.
year | journal | country | edition | language |
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2018-03-14 |