Scott Peter A, Najafi-Majd Elnaz, Yıldırım Caynak Elif, Gidiş Müge, Kaya Uğur, Bradley Shaffer H
Natural Sciences Collegium, Eckerd College, 4200 54(th) Ave S, St. Petersburg, FL 33711 USA; Department of Ecology and Evolutionary Biology, University of California, Los Angeles, Los Angeles, CA, USA.
Section of Zoology, Department of Biology, Faculty of Science, Ege University, Bornova, İzmir, Turkey.
Mol Phylogenet Evol. 2025 Jan;202:108205. doi: 10.1016/j.ympev.2024.108205. Epub 2024 Oct 10.
Salamanders of the genus Lyciasalamandra are represented by as many as 20 narrow-range endemic taxa inhabiting the Mediterranean coast of Turkey and a handful of Aegean Islands. Despite recent molecular phylogenetic studies, the genus is rife with uncertainty about the number of contained species and their phylogenetic relationships, both of which can interfere with needed conservation actions. To test species limits and infer interrelationships we generated as many as 113,176 RAD loci containing 229,427 single nucleotide polymorphisms (SNPs), for 110 specimens of Lyciasalamandra representing 19 of the 20 described taxa. Through a conservative species delimitation approach, we found support for eight species in the genus which broadly agree with currently described species-level diversity. We then use multiple coalescent-based species tree methods to resolve relationships in this relatively old, synchronous species radiation. We recommend synonymization of the largely over-split subspecific taxa, and the elevation of L. luschani finikensis to full species status as L. finikensis. Our hope is that this revised taxonomic framework provides a stable foundation for conservation management in these fragile, microendemic taxa.
Lyciasalamandra属的蝾螈有多达20个窄域特有分类单元,分布于土耳其地中海沿岸和少数几个爱琴海岛屿。尽管最近有分子系统发育研究,但该属在所含物种数量及其系统发育关系方面仍充满不确定性,这两者都会干扰必要的保护行动。为了检验物种界限并推断相互关系,我们为代表20个已描述分类单元中19个的110个Lyciasalamandra标本生成了多达113,176个RAD位点,包含229,427个单核苷酸多态性(SNP)。通过一种保守的物种界定方法,我们发现该属中有八个物种得到支持,这与目前描述的物种水平多样性大致相符。然后我们使用多种基于溯祖的物种树方法来解析这个相对古老、同步的物种辐射中的关系。我们建议将大多过度细分的亚种分类单元进行同义化处理,并将L. luschani finikensis提升为完整物种L. finikensis。我们希望这个修订后的分类框架为这些脆弱的微特有分类单元的保护管理提供一个稳定的基础。