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Environmental <scp>DNA</scp> metabarcoding: Transforming how we survey animal and plant communities

Molecular Ecology · 2017 · Vol. 26(21) · pp. 5872–5895
Kristy DeinerHolly M. BikElvira MächlerMathew SeymourAnaïs Lacoursière‐RousselFlorian AltermattSimon CreerIliana BistaDavid M. LodgeNatasha de VereMichael E. PfrenderLouis Bernatchez

Abstract

The genomic revolution has fundamentally changed how we survey biodiversity on earth. High-throughput sequencing ("HTS") platforms now enable the rapid sequencing of DNA from diverse kinds of environmental samples (termed "environmental DNA" or "eDNA"). Coupling HTS with our ability to associate sequences from eDNA with a taxonomic name is called "eDNA metabarcoding" and offers a powerful molecular tool capable of noninvasively surveying species richness from many ecosystems. Here, we review the use of eDNA metabarcoding for surveying animal and plant richness, and the challenges in using eDNA approaches to estimate relative abundance. We highlight eDNA applications in freshwater, marine and terrestrial environments, and in this broad context, we distill what is known about the ability of different eDNA sample types to approximate richness in space and across time. We provide guiding questions for study design and discuss the eDNA metabarcoding workflow with a focus on primers and library preparation methods. We additionally discuss important criteria for consideration of bioinformatic filtering of data sets, with recommendations for increasing transparency. Finally, looking to the future, we discuss emerging applications of eDNA metabarcoding in ecology, conservation, invasion biology, biomonitoring, and how eDNA metabarcoding can empower citizen science and biodiversity education.

Environmental DNA in Biodiversity StudiesMicrobial Community Ecology and PhysiologyIdentification and Quantification in FoodBiologyEnvironmental DNAMolecular ecologyDNAEvolutionary biologyEcologyComputational biologyGeneticsBiodiversityPopulation

MeSH terms

AnimalsConservation of Natural ResourcesEcologyEnvironmental MonitoringPlantsDNA PrimersBiodiversityDNA Barcoding, Taxonomic

Funding

  • National Science Foundation
  • U.S. Department of Defense
  • Ecological Society of America
  • Llywodraeth Cymru
  • Sight Research UK
  • European Cooperation in Science and Technology
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Bangor University
  • NERC Biomolecular Analysis Facility
  • National Oceanic and Atmospheric Administration
  • Strategic Environmental Research and Development Program
  • Natural Environment Research Council
  • Center for Sponsored Coastal Ocean Research
  • European Social Fund
Citations
1,861
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Cited by
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PLoS Computational Biology · 2021 · 895 citations
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