A DNA-Based Registry for All Animal Species: The Barcode Index Number (BIN) System

Реестр всех видов животных на основе ДНК: система штрихкодовых индексных номеров (BIN)
Paul D. N. Hebert, Sujeevan Ratnasingham
2013-07-08

Barcode Index Number (BIN) systemDNA-based taxonomyRESL algorithmcytochrome c oxidase I (COI)operational taxonomic units (OTUs)
Because many animal species are undescribed, and because the identification of known species is often difficult, interim taxonomic nomenclature has often been used in biodiversity analysis. By assigning individuals to presumptive species, called operational taxonomic units (OTUs), these systems speed investigations into the patterning of biodiversity and enable studies that would otherwise be impossible. Although OTUs have conventionally been separated through their morphological divergence, DNA-based delineations are not only feasible, but have important advantages. OTU designation can be automated, data can be readily archived, and results can be easily compared among investigations. This study exploits these attributes to develop a persistent, species-level taxonomic registry for the animal kingdom based on the analysis of patterns of nucleotide variation in the barcode region of the cytochrome c oxidase I (COI) gene. It begins by examining the correspondence between groups of specimens identified to a species through prior taxonomic work and those inferred from the analysis of COI sequence variation using one new (RESL) and four established (ABGD, CROP, GMYC, jMOTU) algorithms. It subsequently describes the implementation, and structural attributes of the Barcode Index Number (BIN) system. Aside from a pragmatic role in biodiversity assessments, BINs will aid revisionary taxonomy by flagging possible cases of synonymy, and by collating geographical information, descriptive metadata, and images for specimens that are likely to belong to the same species, even if it is undescribed. More than 274,000 BIN web pages are now available, creating a biodiversity resource that is positioned for rapid growth.
1
BIN assignment enables automated, archivable, and cross-study-comparable delimitation of presumptive animal species or operational taxonomic units.
2
BINs support biodiversity assessment and revisionary taxonomy by flagging potential synonymies and aggregating geographic, metadata, and image information for likely conspecific specimens.
3
More than 274,000 BIN web pages were available, establishing a rapidly expandable biodiversity resource that includes undescribed species.
4
The study develops the Barcode Index Number (BIN) system as a persistent, species-level DNA registry for all animals based on COI barcode variation.
5
The study evaluates correspondence between taxonomically identified species groups and COI-based clusters using RESL, ABGD, CROP, GMYC, and jMOTU algorithms.

animal species and specimens represented by cytochrome c oxidase I (COI) barcode sequences

DNA-based species-level delimitation and persistent taxonomic registry through the Barcode Index Number (BIN) system

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2013-07-08
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Paul D. N. Hebert
Sujeevan Ratnasingham
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