Scinovex
article Open AccessTop 1% cited

The Promise of DNA Barcoding for Taxonomy

Systematic Biology · 2005 · Vol. 54(5) · pp. 852–859
Paul D. N. HebertT. Ryan Gregory

Abstract

DNA barcoding is a novel system designed to provide rapid, accurate, and automatable species identifications by using short, standardized gene regions as internal species tags. As a consequence, it will make the Linnaean taxonomic system more accessible, with benefits to ecologists, conservationists, and the diversity of agencies charged with the control of pests, invasive species, and food safety. More broadly, DNA barcoding allows a day to be envisioned when every curious mind, from professional biologists to schoolchildren, will have easy access to the names and biological attributes of any species on the planet. In addition to assigning specimens to known species, DNA barcoding will accelerate the pace of species discovery by allowing taxonomists to rapidly sort specimens and by highlighting divergent taxa that may represent new species. By augmenting their capabilities in these ways, DNA barcoding offers taxonomists the opportunity to greatly expand, and eventually complete, a global inventory of life’s diversity. Despite the potential benefits of DNA barcoding to both the practitioners and users of taxonomy, it has been controversial in some scientific circles (Wheeler, 2004; Will and Rubinoff, 2004; Ebach and Holdredge, 2005; Will et al., 2005). A few have even characterized DNA barcoding as being “anti-taxonomy,” arguing that its implementation will signal the death of a system 250 years in the making. We feel that this opposition stems from misconceptions about the DNA barcoding effort. As such, we welcome this opportunity to clarify both the rationale and potential impacts of DNA barcoding. In responding to this set of questions, we emphasize the multiple positive impacts of this approach for taxonomy and biodiversity science.

Identification and Quantification in FoodEnvironmental DNA in Biodiversity StudiesGenetic diversity and population structureDNA barcodingBiologyTaxonomy (biology)Evolutionary biologyMolecular taxonomyComputational biologyZoologyPhylogeneticsGeneticsGene

MeSH terms

ClassificationSpecies SpecificitySequence Analysis, DNADatabases, Genetic

Funding

  • Gordon and Betty Moore Foundation
  • Natural Sciences and Engineering Research Council of Canada
Citations
1,310
FWCI
11.60
field-weighted impact
References
31
Percentile
99%
vs. same field & year
Citations per year
References
Identification of Birds through DNA Barcodes
PLoS Biology · 2004 · 2,652 citations
Identifying spiders through DNA barcodes
Canadian Journal of Zoology · 2005 · 568 citations
Biological identifications through DNA barcodes
Proceedings of the Royal Society B Biological Sciences · 2003 · 13,103 citations
DNA barcoding Australia's fish species
Philosophical Transactions of the Royal Society B Biological Sciences · 2005 · 4,176 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.