DNA Barcoding: Error Rates Based on Comprehensive Sampling

ДНК-штрихкодирование: частота ошибок при комплексном отборе образцов
Chris Meyer, Gustav Paulay
2005-11-18

DNA barcodingbarcoding gapintraspecific variationspecies delineationspecies identification
DNA barcoding has attracted attention with promises to aid in species identification and discovery; however, few well-sampled datasets are available to test its performance. We provide the first examination of barcoding performance in a comprehensively sampled, diverse group (cypraeid marine gastropods, or cowries). We utilize previous methods for testing performance and employ a novel phylogenetic approach to calculate intraspecific variation and interspecific divergence. Error rates are estimated for (1) identifying samples against a well-characterized phylogeny, and (2) assisting in species discovery for partially known groups. We find that the lowest overall error for species identification is 4%. In contrast, barcoding performs poorly in incompletely sampled groups. Here, species delineation relies on the use of thresholds, set to differentiate between intraspecific variation and interspecific divergence. Whereas proponents envision a "barcoding gap" between the two, we find substantial overlap, leading to minimal error rates of approximately 17% in cowries. Moreover, error rates double if only traditionally recognized species are analyzed. Thus, DNA barcoding holds promise for identification in taxonomically well-understood and thoroughly sampled clades. However, the use of thresholds does not bode well for delineating closely related species in taxonomically understudied groups. The promise of barcoding will be realized only if based on solid taxonomic foundations.
1
A novel phylogenetic approach was used to estimate intraspecific variation and interspecific divergence alongside established barcoding performance tests.
2
DNA barcoding performed poorly for species discovery in incompletely sampled groups, with threshold-based delineation producing minimum error rates of approximately 17%.
3
Substantial overlap between intraspecific variation and interspecific divergence undermines the expected barcoding gap, while analyzing only traditionally recognized species doubles error rates.
4
The lowest overall error rate for species identification was 4% when samples were compared against a well-characterized phylogeny.
5
The study provides the first comprehensive assessment of DNA barcoding performance in a densely sampled, diverse group of marine cowries.

DNA barcoding performance in comprehensively sampled cypraeid marine gastropods (cowries)

Error rates and species-identification/species-delineation accuracy under complete versus incomplete taxonomic sampling

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2005-11-18
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Chris Meyer
Gustav Paulay
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