Unexpectedly high levels of cryptic diversity uncovered by a complete DNA barcoding of reptiles of the Socotra Archipelago

Few DNA barcoding studies of squamate reptiles have been conducted. Due to the signifi- cance of the Socotra Archipelago (a UNESCO Natural World Heritage site and a biodiversity hotspot) and the conservation interest of its reptile fauna (94% endemics), we performed the most comprehensive DNA barcod...

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Detalles Bibliográficos
Autores: Vasconcelos, Raquel, Montero-Mendieta, Santiago, Simó-Riudalbas, Marc, Sindaco, Roberto, Santos Santiró, Xavier, Fasola, Mauro, Llorente, Gustavo A., Razzetti, Edoardo, Carranza, Salvador
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2016
País:España
Institución:Universidad de Barcelona
Repositorio:Dipòsit Digital de la UB
OAI Identifier:oai:diposit.ub.edu:2445/104497
Acceso en línea:https://hdl.handle.net/2445/104497
Access Level:acceso abierto
Palabra clave:Ressenya genètica
Illes
Rèptils
Àfrica
DNA fingerprinting
Islands
Reptiles
Africa
Descripción
Sumario:Few DNA barcoding studies of squamate reptiles have been conducted. Due to the signifi- cance of the Socotra Archipelago (a UNESCO Natural World Heritage site and a biodiversity hotspot) and the conservation interest of its reptile fauna (94% endemics), we performed the most comprehensive DNA barcoding study on an island group to date to test its applicability to specimen identification and species discovery. Reptiles constitute Socotra ' s most impor- tant vertebrate fauna, yet their taxonomy remains under-studied. We successfully DNA-bar-coded 380 individuals of all 31 presently recognized species. The specimen identification success rate is moderate to high, and almost all species presented local barcoding gaps.The unexpected high levels of intra-specific variability found within some species suggest cryptic diversity. Species richness may be under-estimated by 13.8-54.4%. This has implications in the species ranges and conservation status that should be considered for conservation planning. Other phylogenetic studies using mitochondrial and nuclear markers are congruent with our results. We conclude that, despite its reduced length (663 base pairs), cytochrome c oxidase 1, COI, is very useful for specimen identification and for detecting intra-specific diversity, and has a good phylogenetic signal. We recommend DNA barcoding to be applied to other biodiversity hotspots for quickly and cost-efficiently flagging species discovery, preferentially incorporated into an integrative taxonomic framework.