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Archaeology meets environmental genomics: implementing sedaDNA in the study of the human past
by
Altınışık, N. Ezgi
, Özdoğan, Kadir Toykan
, de Groot, Arjen
, Hammers, Neeke
, Gelabert, Pere
, Plets, Gertjan
in
Anthropology
/ Archaeology
/ Chemistry/Food Science
/ Deoxyribonucleic acid
/ DNA
/ Earth and Environmental Science
/ Earth Sciences
/ Genetic testing
/ Genomics
/ Geography
/ Hominids
/ Human populations
/ Human remains
/ Humans
/ Life Sciences
/ Methods
/ Mitochondrial DNA
/ Permafrost
/ Sediments
2024
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Archaeology meets environmental genomics: implementing sedaDNA in the study of the human past
by
Altınışık, N. Ezgi
, Özdoğan, Kadir Toykan
, de Groot, Arjen
, Hammers, Neeke
, Gelabert, Pere
, Plets, Gertjan
in
Anthropology
/ Archaeology
/ Chemistry/Food Science
/ Deoxyribonucleic acid
/ DNA
/ Earth and Environmental Science
/ Earth Sciences
/ Genetic testing
/ Genomics
/ Geography
/ Hominids
/ Human populations
/ Human remains
/ Humans
/ Life Sciences
/ Methods
/ Mitochondrial DNA
/ Permafrost
/ Sediments
2024
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Archaeology meets environmental genomics: implementing sedaDNA in the study of the human past
by
Altınışık, N. Ezgi
, Özdoğan, Kadir Toykan
, de Groot, Arjen
, Hammers, Neeke
, Gelabert, Pere
, Plets, Gertjan
in
Anthropology
/ Archaeology
/ Chemistry/Food Science
/ Deoxyribonucleic acid
/ DNA
/ Earth and Environmental Science
/ Earth Sciences
/ Genetic testing
/ Genomics
/ Geography
/ Hominids
/ Human populations
/ Human remains
/ Humans
/ Life Sciences
/ Methods
/ Mitochondrial DNA
/ Permafrost
/ Sediments
2024
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Archaeology meets environmental genomics: implementing sedaDNA in the study of the human past
Journal Article
Archaeology meets environmental genomics: implementing sedaDNA in the study of the human past
2024
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Overview
Sedimentary ancient DNA (sedaDNA) has become one of the standard applications in the field of paleogenomics in recent years. It has been used for paleoenvironmental reconstructions, detecting the presence of prehistoric species in the absence of macro remains and even investigating the evolutionary history of a few species. However, its application in archaeology has been limited and primarily focused on humans. This article argues that sedaDNA holds significant potential in addressing key archaeological questions concerning the origins, lifestyles, and environments of past human populations. Our aim is to facilitate the integration of sedaDNA into the standard workflows in archaeology as a transformative tool, thereby unleashing its full potential for studying the human past. Ultimately, we not only underscore the challenges inherent in the sedaDNA field but also provide a research agenda for essential enhancements needed for implementing sedaDNA into the archaeological workflow.
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