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dc.contributor.authorIrisarri, Íker-
dc.contributor.authorMauro, Diego San-
dc.contributor.authorAbascal, Federico-
dc.contributor.authorOhler, Annemarie-
dc.contributor.authorVences, Miguel-
dc.contributor.authorZardoya, Rafael-
dc.date.accessioned2013-01-22T12:08:00Z-
dc.date.available2013-01-22T12:08:00Z-
dc.date.issued2012-11-15-
dc.identifierhttp://dx.doi.org/10.1186/1471-2164-13-626-
dc.identifier.citationBMC Genomics. 15;13(1):626 (2012)-
dc.identifier.urihttp://hdl.handle.net/10261/64693-
dc.description.abstractAbstract Background Understanding the causes underlying heterogeneity of molecular evolutionary rates among lineages is a long-standing and central question in evolutionary biology. Although several earlier studies showed that modern frogs (Neobatrachia) experienced an acceleration of mitochondrial gene substitution rates compared to non-neobatrachian relatives, no further characterization of this phenomenon was attempted. To gain new insights on this topic, we sequenced the complete mitochondrial genomes and nine nuclear loci of one pelobatoid (Pelodytes punctatus) and five neobatrachians, Heleophryne regis (Heleophrynidae), Lechriodus melanopyga (Limnodynastidae), Calyptocephalella gayi (Calyptocephalellidae), Telmatobius bolivianus (Ceratophryidae), and Sooglossus thomasseti (Sooglossidae). These represent major clades not included in previous mitogenomic analyses, and most of them are remarkably species-poor compared to other neobatrachians. Results We reconstructed a fully resolved and robust phylogeny of extant frogs based on the new mitochondrial and nuclear sequence data, and dated major cladogenetic events. The reconstructed tree recovered Heleophryne as sister group to all other neobatrachians, the Australasian Lechriodus and the South American Calyptocephalella formed a clade that was the sister group to Nobleobatrachia, and the Seychellois Sooglossus was recovered as the sister group of Ranoides. We used relative-rate tests and direct comparison of branch lengths from mitochondrial and nuclear-based trees to demonstrate that both mitochondrial and nuclear evolutionary rates are significantly higher in all neobatrachians compared to their non-neobatrachian relatives, and that such rate acceleration started at the origin of Neobatrachia. Conclusions Through the analysis of the selection coefficient (ω) in different branches of the tree, we found compelling evidence of relaxation of purifying selection in neobatrachians, which could (at least in part) explain the observed higher mitochondrial and nuclear substitution rates in this clade. Our analyses allowed us to discard that changes in substitution rates could be correlated with increased mitochondrial genome rearrangement or diversification rates observed in different lineages of neobatrachians.-
dc.description.sponsorshipThis work was supported by the Spanish Ministry of Science and Innovation (CGL2010-18216 to RZ and RYC-2011-09321 to DSM), and the Consejo Superior de Investigaciones Científicas of Spain (CSIC) and the European Social Fund (ESF) (JAE-pre PhD fellowhip to II). We acknowledge support of the publication fee by the CSIC Open Access Publication Support Initiative through its Unit of Information Resources for Research (URICI).-
dc.language.isoeng-
dc.publisherBioMed Central-
dc.relation.isversionofPublisher's version-
dc.rightsopenAccess-
dc.titleThe origin of modern frogs (Neobatrachia) was accompanied by acceleration in mitochondrial and nuclear substitution rates-
dc.typeartículo-
dc.date.updated2013-01-22T12:08:01Z-
dc.description.versionPeer Reviewed-
dc.rights.holderIker Irisarri et al.; licensee BioMed Central Ltd.-
dc.type.coarhttp://purl.org/coar/resource_type/c_6501es_ES
item.languageiso639-1en-
item.fulltextWith Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.cerifentitytypePublications-
item.grantfulltextopen-
item.openairetypeartículo-
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