Biological identifications through DNA barcodes
Биологическая идентификация с помощью ДНК-штрихкодов
2003-02-07
SCID: 54.1/5c9f68sg
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DNA barcodingcytochrome c oxidase I (COI)lepidopteran speciesspecies identificationtaxonomic classification
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Abstract (AI)
Although much biological research depends upon species diagnoses, taxonomic expertise is collapsing. We are convinced that the sole prospect for a sustainable identification capability lies in the construction of systems that employ DNA sequences as taxon 'barcodes'. We establish that the mitochondrial gene cytochrome c oxidase I (COI) can serve as the core of a global bioidentification system for animals. First, we demonstrate that COI profiles, derived from the low-density sampling of higher taxonomic categories, ordinarily assign newly analysed taxa to the appropriate phylum or order. Second, we demonstrate that species-level assignments can be obtained by creating comprehensive COI profiles. A model COI profile, based upon the analysis of a single individual from each of 200 closely allied species of lepidopterans, was 100% successful in correctly identifying subsequent specimens. When fully developed, a COI identification system will provide a reliable, cost-effective and accessible solution to the current problem of species identification. Its assembly will also generate important new insights into the diversification of life and the rules of molecular evolution.
Key Findings
1
A fully developed COI system could provide a reliable, cost-effective, and accessible solution to species identification amid declining taxonomic expertise.
2
Building comprehensive COI barcode resources could generate insights into biodiversity diversification and molecular evolution.
3
Comprehensive COI profiles enable species-level identification, demonstrated by 100% correct assignments for specimens from 200 closely allied lepidopteran species.
4
Low-density COI sampling across higher taxonomic categories usually assigns newly analyzed taxa to the correct phylum or order.
5
The study identifies mitochondrial cytochrome c oxidase I (COI) as a candidate core barcode for a global animal bioidentification system.
Research Object
animal taxa and specimens, particularly lepidopteran species, characterized by mitochondrial cytochrome c oxidase I (COI) sequences
Research Subject
the ability of COI DNA barcode profiles to assign and correctly identify animal taxa at phylum, order, and species levels
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2003-02-07
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