Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.

While numerous ancient human DNA datasets from across Europe have been published till date, modern-day Poland in particular, remains uninvestigated. Besides application in the reconstruction of continent-wide human history, data from this region would also contribute towards our understanding of the...

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Main Authors: Anna Juras, Miroslawa Dabert, Alena Kushniarevich, Helena Malmström, Maanasa Raghavan, Jakub Z Kosicki, Ene Metspalu, Eske Willerslev, Janusz Piontek
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4206425?pdf=render
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spelling doaj-665489ec65074713b3858e29e5cd81332020-11-24T21:50:56ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e11083910.1371/journal.pone.0110839Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.Anna JurasMiroslawa DabertAlena KushniarevichHelena MalmströmMaanasa RaghavanJakub Z KosickiEne MetspaluEske WillerslevJanusz PiontekWhile numerous ancient human DNA datasets from across Europe have been published till date, modern-day Poland in particular, remains uninvestigated. Besides application in the reconstruction of continent-wide human history, data from this region would also contribute towards our understanding of the history of the Slavs, whose origin is hypothesized to be in East or Central Europe. Here, we present the first population-scale ancient human DNA study from the region of modern-day Poland by establishing mitochondrial DNA profiles for 23 samples dated to 200 BC - 500 AD (Roman Iron Age) and for 20 samples dated to 1000-1400 AD (Medieval Age). Our results show that mitochondrial DNA sequences from both periods belong to haplogroups that are characteristic of contemporary West Eurasia. Haplotype sharing analysis indicates that majority of the ancient haplotypes are widespread in some modern Europeans, including Poles. Notably, the Roman Iron Age samples share more rare haplotypes with Central and Northeast Europeans, whereas the Medieval Age samples share more rare haplotypes with East-Central and South-East Europeans, primarily Slavic populations. Our data demonstrates genetic continuity of certain matrilineages (H5a1 and N1a1a2) in the area of present-day Poland from at least the Roman Iron Age until present. As such, the maternal gene pool of present-day Poles, Czechs and Slovaks, categorized as Western Slavs, is likely to have descended from inhabitants of East-Central Europe during the Roman Iron Age.http://europepmc.org/articles/PMC4206425?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Anna Juras
Miroslawa Dabert
Alena Kushniarevich
Helena Malmström
Maanasa Raghavan
Jakub Z Kosicki
Ene Metspalu
Eske Willerslev
Janusz Piontek
spellingShingle Anna Juras
Miroslawa Dabert
Alena Kushniarevich
Helena Malmström
Maanasa Raghavan
Jakub Z Kosicki
Ene Metspalu
Eske Willerslev
Janusz Piontek
Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
PLoS ONE
author_facet Anna Juras
Miroslawa Dabert
Alena Kushniarevich
Helena Malmström
Maanasa Raghavan
Jakub Z Kosicki
Ene Metspalu
Eske Willerslev
Janusz Piontek
author_sort Anna Juras
title Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
title_short Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
title_full Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
title_fullStr Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
title_full_unstemmed Ancient DNA reveals matrilineal continuity in present-day Poland over the last two millennia.
title_sort ancient dna reveals matrilineal continuity in present-day poland over the last two millennia.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description While numerous ancient human DNA datasets from across Europe have been published till date, modern-day Poland in particular, remains uninvestigated. Besides application in the reconstruction of continent-wide human history, data from this region would also contribute towards our understanding of the history of the Slavs, whose origin is hypothesized to be in East or Central Europe. Here, we present the first population-scale ancient human DNA study from the region of modern-day Poland by establishing mitochondrial DNA profiles for 23 samples dated to 200 BC - 500 AD (Roman Iron Age) and for 20 samples dated to 1000-1400 AD (Medieval Age). Our results show that mitochondrial DNA sequences from both periods belong to haplogroups that are characteristic of contemporary West Eurasia. Haplotype sharing analysis indicates that majority of the ancient haplotypes are widespread in some modern Europeans, including Poles. Notably, the Roman Iron Age samples share more rare haplotypes with Central and Northeast Europeans, whereas the Medieval Age samples share more rare haplotypes with East-Central and South-East Europeans, primarily Slavic populations. Our data demonstrates genetic continuity of certain matrilineages (H5a1 and N1a1a2) in the area of present-day Poland from at least the Roman Iron Age until present. As such, the maternal gene pool of present-day Poles, Czechs and Slovaks, categorized as Western Slavs, is likely to have descended from inhabitants of East-Central Europe during the Roman Iron Age.
url http://europepmc.org/articles/PMC4206425?pdf=render
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