Preprint · OA
via OpenAlex
Neandertal and Denisovan DNA from Pleistocene sediments
Viviane Slon, Charlotte Hopfe, Clemens L. Weiß, Fabrizio Mafessoni, Marco de la Rasilla Vives, Carles Lalueza‐Fox, Antonio Rosas, Marie Soressi, Monika V. Knul, Rebecca Miller, John R. Stewart, А. П. Деревянко, Zenobia Jacobs, Bo Li, Richard G. Roberts
Science · 2017 · ▲ 477 citations
Abstract
Although a rich record of Pleistocene human-associated archaeological assemblages exists, the scarcity of hominin fossils often impedes the understanding of which hominins occupied a site. Using targeted enrichment of mitochondrial DNA, we show that cave sediments represent a rich source of ancient mammalian DNA that often includes traces of hominin DNA, even at sites and in layers where no hominin remains have been discovered. By automation-assisted screening of numerous sediment samples, we detected Neandertal DNA in eight archaeological layers from four caves in Eurasia. In Denisova Cave, we retrieved Denisovan DNA in a Middle Pleistocene layer near the bottom of the stratigraphy. Our work opens the possibility of detecting the presence of hominin groups at sites and in areas where no skeletal remains are found.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1126/science.aam9695
- Canonical
- link ↗
- Fetched
- 2026-07-30 MST
Cite this
APA
Slon, V., Hopfe, C., Weiß, C.L., Mafessoni, F., Vives, M.D.L.R., Lalueza‐Fox, C., Rosas, A., Soressi, M., Knul, M.V., Miller, R., Stewart, J.R., Деревянко, �.�., Jacobs, Z., Li, B., Roberts, R.G., Shunkov, M., Lumley, H.D., Perrenoud, C., Gušić, I., & Kućan, �. (2017). Neandertal and Denisovan DNA from Pleistocene sediments. <em>Science</em>. https://doi.org/10.1126/science.aam9695
Vancouver
Slon V, Hopfe C, Weiß CL, Mafessoni F, Vives MDLR, Lalueza‐Fox C, et al. Neandertal and Denisovan DNA from Pleistocene sediments. Science. 2017. doi:10.1126/science.aam9695.
BibTeX
@unpublished{viviane2017Neande,
title = {Neandertal and Denisovan DNA from Pleistocene sediments},
author = {Viviane Slon and Charlotte Hopfe and Clemens L. Weiß and Fabrizio Mafessoni and Marco de la Rasilla Vives and Carles Lalueza‐Fox and Antonio Rosas and Marie Soressi and Monika V. Knul and Rebecca Miller and John R. Stewart and А. П. Деревянко and Zenobia Jacobs and Bo Li and Richard G. Roberts and M.V. Shunkov and Henry de Lumley and Christian Perrenoud and Ivan Gušić and Željko Kućan and Pavao Rudan and Ayinuer Aximu‐Petri and Elena Essel and Sarah Nagel and Birgit Nickel},
journal = {Science},
year = {2017},
doi = {10.1126/science.aam9695},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Charite University, Berlin, Germany 2021
Open access · US-GOV
Single Cell Leukocyte Landscapes and Cardiovascular Risk in Children With Chronic Kidney Disease
Nature 2021
Preprint · OA
Loop extrusion as a mechanism for formation of DNA damage repair foci
BMC Bioinformatics 2008
Open access · CC-BY
Model-based clustering of DNA methylation array data: a recursive-partitioning algorithm for high-dimensional data arising as a mixture of beta distributions
Experimental Gerontology 1995
Citation only
Mitochondrial DNA mutations associated with aging and degenerative diseases
Human Molecular Genetics 2016
Citation only
DNA methylation profiling in human Huntington's disease brain
Infoscience (Ecole Polytechnique Fédérale de Lausanne) 2021
Preprint · OA