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of the real lizards, family Lacertidae
Darevskia rudis lantzicyreni (DAREVSKY & EISELT, 1967)
Arribas, O. & Candan, K. & Kornilios, P. & Ayaz, D. & Kumlutas, Y. & Gül, S. & Yilmaz, C. & Yildirim Caynak, E. & Ilgaz, C. (2022) -
Revealing biodiversity allows the accurate determination of the underlying causes of many biological processes such as speciation and hybridization. These processes contain many complex patterns, especially in areas with high species diversity. As two of the prominent zoogeographic areas, Anatolia and Caucasus are also home to the genus Darevskia, which has a complex morphological structure and parthenogenetic speciation. Darevskia valentini and D. rudis are two largely distributed taxa of this genus, both of which have a controversial taxonomic delimitation. Here we performed both a highly detailed morphological comparison and a molecular evaluation for the populations in both species groups. The most comprehensive taxonomic revision of this complex was carried out to determine the cases where the data obtained were compatible or not with each approach. As a result of the obtained outputs, it seems that D. spitzenbergerae stat. nov., D. mirabilis stat. nov. and D. obscura stat. nov. should be accepted as the species level, this later with subspecies D. o. bischoffi comb. nov. and D. o. macromaculata comb. nov.. Also, we propose two new taxa: D. josefschmidtleri sp. nov. and D. spitzenbergerae wernermayeri ssp. nov.. It has also been shown that “lantzicyreni” subspecies belong to D. rudis instead of D. valentini. The extensive revision has contributed to subsequent studies to more accurately understand the past histories of species in the genus Darevskia.
Barabanov, A.V. & Doronin, I.V. (2020) -
Ilya S. Darevsky co-described 70 taxa (three genera, 46 species, 21 subspecies) in 44 publications belonging to five orders, eight families of amphibians and reptiles during his career in herpetology. Of this number, three taxa are fossil and 57 taxa are currently considered as valid. By the regions where new taxa were discovered Southeast Asia and Western Asia (includes Caucasus and Asia Minor) dominates. The largest number of descriptions was published in the Russian Journal of Herpetology.
Basoglu, M. & I. Baran (1977) -
Bischoff, W. (2002) -
Darevsky, I.S. (1972) -
Darevsky, I.S. (1978) -
Darevsky, I.S. & Eiselt, J. (1967) -
Eiselt, J. & Darevsky, I.S. & Schmidtler, J.F. (1992) -
Series of newly collected specimens of Lacerta valentini BOETTGER in Eastern Turkey were closely investigated in order to demarcate the areas of the subspecies L. v. valentini and L. v. lantzicyreni. Intermediary populations were found to exist between them, one was described as a new subspecies, Lacerta valentini spitzenbergerae, living in the Cilo-Dag Mountains, Vilayet Hakkâri, Turk
Franzen, M. (1990) -
Ineich, I. & Doronin, I. (2017) -
Leviton, A.E. & Anderson, S.C. (2010) -
Mayer, W. & Lutz, D. (1989) -
Investigated the albumins from 31 species and subspecies of the genus Lacerta s.1. by means of the immunoloical techniue Micro-Complement-fixation. Dendrograms were computed by means of the ktch-MargJiash algorithm. Moreover the taxa of the Lacerta saxicola and the Lacerta danfordi comlexes were analyzed by electrophoresis concerning 14 genetic loci. The results were discussel together with karyological and genitalmorphological data so far known yielding the following relationships: Lacerta graeca shows a closer relationshi to the subgenus Podarcis as does the quite closely related species air L. dugesii and L. perspicikata. Lacerta Iaevis probabl is connected closely to Podarcis, too. Lacerta parva shows a closer relationship to the `small izards` than to the sub-genus Lacerta s. str. A clear decision concerning the position of the Lacerta danfordi complex according to chemosystematical data was not possible. It is isolated from the other species probably about as long as L. puma. Biochemical differences between its `species` are too small to confirm their taxonomical revalorisation by Eiselt and Schmidtler Within the Lacerta saxicola complex the investigated taxa show a close relationship. Lacerta praticola and L. derjugini were definitly assigned to this group.
Schweiger, M. (2003) -