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Biological identifications through DNA barcodes: the case of the Crustacea

Canadian Journal of Fisheries and Aquatic Sciences · 2007 · Vol. 64(2) · pp. 272–295

Abstract

The ability of a 650 base pair section of the mitochondrial cytochrome c oxidase I (COI) gene to provide species-level identifications has been demonstrated for large taxonomic assemblages of animals such as insects, birds, and fishes, but not for the subphylum Crustacea, one of the most diverse groups of arthropods. In this study, we test the ability of COI to provide identifications in this group, examining two disparate levels in the taxonomic hierarchy — orders and species. The first phase of our study involved the development of a sequence profile for 23 dominant crustacean orders, based upon the analysis of 150 species, each belonging to a different family. The COI amino acid data placed these taxa into cohesive assemblages whose membership coincided with currently accepted boundaries at the order, superorder, and subclass levels. Species-level resolution was subsequently examined in an assemblage of Decapoda and in representatives of the genera Daphnia (Cladocera) and Gammarus (Amphipoda). These studies revealed that levels of nucleotide sequence divergence were from 19 to 48 times greater between congeneric species than between individuals of a species. We conclude that sequence variation in the COI barcode region will be very effective for discriminating species of Crustacea.

Identification and Quantification in FoodEnvironmental DNA in Biodiversity StudiesGenetic diversity and population structureBiologyCrustaceanGammarusDNA barcodingTaxonZoologyAmphipodaSpecies complexTaxonomic rankArthropod

Funding

  • Natural Sciences and Engineering Research Council of Canada
Citations
487
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9.25
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References
Identification of Birds through DNA Barcodes
PLoS Biology · 2004 · 2,652 citations
DNA Barcoding: Error Rates Based on Comprehensive Sampling
PLoS Biology · 2005 · 1,948 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
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