Deciphering amphibian diversity through DNA barcoding: chances and challenges

Author:

Vences Miguel1,Thomas Meike2,Bonett Ronald M3,Vieites David R3

Affiliation:

1. Institute for Biodiversity and Ecosystem Dynamics, Zoological Museum, University of AmsterdamMauritskade 61, 1092 AD Amsterdam, The Netherlands

2. Department of Genetics, University of CologneZülpicher Strasse 47, 50674 Cologne, Germany

3. Museum of Vertebrate Zoology and Department of Integrative Biology, University of California3101 Valley Life Sciences Building, Berkeley, CA 94720-3160, USA

Abstract

Amphibians globally are in decline, yet there is still a tremendous amount of unrecognized diversity, calling for an acceleration of taxonomic exploration. This process will be greatly facilitated by a DNA barcoding system; however, the mitochondrial population structure of many amphibian species presents numerous challenges to such a standardized, single locus, approach. Here we analyse intra- and interspecific patterns of mitochondrial variation in two distantly related groups of amphibians, mantellid frogs and salamanders, to determine the promise of DNA barcoding with cytochrome oxidase subunit I (cox1) sequences in this taxon. High intraspecificcox1divergences of 7–14% were observed (18% in one case) within the whole set of amphibian sequences analysed. These high values are not caused by particularly high substitution rates of this gene but by generally deep mitochondrial divergences within and among amphibian species. Despite these high divergences,cox1sequences were able to correctly identify species including disparate geographic variants. The main problems withcox1barcoding of amphibians are (i) the high variability of priming sites that hinder the application of universal primers to all species and (ii) the observed distinct overlap of intraspecific and interspecific divergence values, which implies difficulties in the definition of threshold values to identify candidate species. Common discordances between geographical signatures of mitochondrial and nuclear markers in amphibians indicate that a single-locus approach can be problematic when high accuracy of DNA barcoding is required. We suggest that a number of mitochondrial and nuclear genes may be used as DNA barcoding markers to complementcox1.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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