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A Roadmap for Using Hybridisation Capture–Based Target Enrichment of Ancient Environmental DNA in Palaeoecology

  • Nicole R. Foster
  • , Luke E. Holman
  • , Linda Armbrecht
  • , Jérémy Courtin
  • , Theis Jensen
  • , Mikkel Winther Pedersen
  • , Lennart Schreiber
  • , Hannes Schroeder
  • , Frederik V. Seersholm
  • , Giulia Zampirolo
  • , Kristine Bohmann
  • , Heike H. Zimmermann

Research output: Contribution to journalArticleResearchpeer-review

Abstract

Recovering ancient DNA from environmental samples is transforming the way we understand historical ecosystems. While high-throughput sequencing of the total DNA in environmental samples (shotgun metagenomic sequencing) reveals the taxonomic contents of these samples, the genetic signals of some taxa (e.g., eukaryotes) can be weak compared to the background levels of DNA from organisms such as bacteria, requiring deep sequencing approaches that are costly. Thus, to increase cost-effectiveness, pre-sequencing enrichment of target DNA can be advantageous. One technique to enrich this target DNA is hybridisation capture, where short RNA or DNA baits are designed to match, bind and isolate specific stretches of DNA. Hybridisation capture has previously been applied to recover DNA from ancient skeletal remains, but it is only beginning to emerge as an approach to characterise organisms from ancient environmental samples. Thus, there is limited information on establishing hybridisation capture workflows for ancient environmental DNA applications, including the limitations and advantages. This mini review focuses on establishing a roadmap for the applications of hybridisation capture to ancient environmental DNA samples.

Original languageEnglish
Article numbere70152
JournalMolecular Ecology Resources
Volume26
Issue number5
DOIs
Publication statusPublished - Jul 2026

Keywords

  • aDNA
  • ancient eDNA
  • bait capture
  • eDNA
  • hybridisation capture
  • metagenomics
  • probes
  • sedaDNA

Programme Area

  • Programme Area 5: Nature and Climate

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