Literature DB >> 33217580

Swimming through the sands of the Sahara and Arabian deserts: Phylogeny of sandfish skinks (Scincidae, Scincus) reveals a recent and rapid diversification.

Jiří Šmíd1, Marek Uvizl2, Mohammed Shobrak3, Al Faqih Ali Salim4, Raed Hamoud M AlGethami5, Abdulaziz Raqi Algethami6, Abdulkarim Saleh K Alanazi7, Saad Dasman Alsubaie8, Salem Busais9, Salvador Carranza10.   

Abstract

Large parts of the Sahara Desert and Arabia are covered by sand seas and sand dunes, which are inhabited by specialized animal communities. For example, many lizards have developed adaptations to life in loose sand, including sand-swimming behavior. The best-known sand swimmers of the Saharo-Arabia are the sandfish skinks (genus Scincus). Although there are currently only four Scincus species recognized, their phylogenetic relationships have not yet been addressed in detail. We use eight genetic markers (three mitochondrial, five nuclear) and a complete sampling of species to infer the relationships within the genus. We employ multiple phylogenetic approaches to reconstruct the evolutionary history of these skinks and to assess the level of reticulation at the onset of their radiation. Our results indicate the presence of five strongly supported species-level lineages, four represented by the currently recognized species and the fifth by S. scincus conirostris, which does not form a clade with S. scincus. Based on these results we elevate the Iranian and northern Arabian S. conirostris to the species level. The two Saharan species, S. albifasciatus and S. scincus, are sister in all analyses. Deeper relationships within the genus, however, remained largely unresolved despite the extensive genetic data set. This basal polytomy, together with the fact that we detected no sign of hybridization in the history of the genus, indicates that the diversification of the five Scincus species was rapid, burst-like, and not followed by secondary hybridization events. Divergence time estimations show a Middle Pliocene crown radiation of the genus (3.3 Mya). We hypothesize that the aridification of the Saharo-Arabia that began in the Late Miocene triggered the initial diversification of Scincus, and that the subsequent expansion of sand deserts enabled their dispersal over the large Saharan and Arabian range. We discuss the evolution of body form in sand swimming lizards and ponder how Scincus retained their fully limbed morphology despite being sand swimmers that are typically limbless.
Copyright © 2020 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Aridity; Biogeography; Limb evolution; Psammophily; Scincomorpha; Squamata; Systematics

Year:  2020        PMID: 33217580     DOI: 10.1016/j.ympev.2020.107012

Source DB:  PubMed          Journal:  Mol Phylogenet Evol        ISSN: 1055-7903            Impact factor:   4.286


  2 in total

1.  Reconstructing Squamate Biogeography in Afro-Arabia Reveals the Influence of a Complex and Dynamic Geologic Past.

Authors:  Héctor Tejero-Cicuéndez; Austin H Patton; Daniel S Caetano; Jiří Šmíd; Luke J Harmon; Salvador Carranza
Journal:  Syst Biol       Date:  2022-02-10       Impact factor: 15.683

2.  Ecological specialization, rather than the island effect, explains morphological diversification in an ancient radiation of geckos.

Authors:  Héctor Tejero-Cicuéndez; Marc Simó-Riudalbas; Iris Menéndez; Salvador Carranza
Journal:  Proc Biol Sci       Date:  2021-12-22       Impact factor: 5.349

  2 in total

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