4.2 Article

Phylogeny and phylogeography of the Lozekia-Kovacsia species group (Gastropoda: Hygromiidae)

出版社

WILEY
DOI: 10.1111/j.1439-0469.2009.00534.x

关键词

Lozekia; Kovacsia; Hygromia; Carpathians; Pannon; Pannonicum; phylogeography; phylogeny; mitochondrial cytochrome oxidase subunit I

资金

  1. Hungarian National RD Program [3B023-04]
  2. Regional University Knowledge Center for Environmental and Nanotechnology
  3. Bolyai Scholarship
  4. Hungarian Scientific Research Fund-Norwegian Financing Mechanism [OTKA-NNF 78185]

向作者/读者索取更多资源

The Lozekia-Kovacsia species group comprises three species of high conservation concern, Lozekia transsilvanica (Westerlund, 1876), Lozekia deubeli (M. Kimakowicz, 1890) and Kovacsia kovacsi (Varga and L. Pinter, 1972), which occupy relatively small ranges in the Carpathian-Pannonian region. Despite their conservation concern, the phylogeny and biogeographical history of these species have not been studied by molecular methods up to now. This study, based on mitochondrial cytochrome oxidase subunit I gene sequences, has two main objectives: (i) to infer the phylogenetic relationships within the group in order to test the latest morphology-based system, proposed by Nordsieck [1993, Das System der palaarktischen Hygromiidae (Gastropoda: Stylommatophora: Helicoidea). Arch Molluskenkunde 122:1] and (ii) to reconstruct the distribution history of the three species. The monophyly and thus the systematic distinctness of the three species was confirmed, but our findings do not support the monophyly of the Lozekia genus and therefore contradict the current system of the species group. Genetic diversity was found to be much higher within L. deubeli than within the other two species, a possible explanation of this phenomenon is that L. transsilvanica and K. kovacsi are more recently evolved, younger species. Nested clade phylogeographycal analysis showed that the three species evolved by fragmentation events; probably L. deubeli and the ancestor of the other two species split first. At the intraspecific level, fragmentation events, as well as range expansion, played a significant role in the biogeographical history of this species group. As our findings are based on a single mitochondrial gene, we feel premature to propose changes in the generally accepted system and nomenclature. Further molecular phylogenetic analyses, also involving nuclear DNA sequences, should clarify if the evolutionary scenario suggested by our data is valid, and the three species can indeed be placed within the same genus, Lozekia.

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