Not the Last Piece of the Puzzle: Niphargus Phylogeny in Hungary

Author:

Balázs Gergely12ORCID,Borko Špela3ORCID,Angyal Dorottya4ORCID,Zakšek Valerija3,Biró Anna125ORCID,Fišer Cene3ORCID,Herczeg Gábor12

Affiliation:

1. ELKH-ELTE-MTM Integrative Ecology Research Group, 1117 Budapest, Hungary

2. Department of Systematic Zoology and Ecology, Institute of Biology, ELTE Eötvös Loránd University, 1117 Budapest, Hungary

3. SubBio Lab, Department of Biology, Biotechnical Faculty, University of Ljubljana, 1000 Ljubljana, Slovenia

4. Calle 31 #436A x 36 y 36A Colonia Jesús Carranza, Mérida 97109, Mexico

5. Doctoral School of Biology, Institute of Biology, ELTE Eötvös Loránd University, 1117 Budapest, Hungary

Abstract

The Palaearctic genus Niphargus is a promising model system to understand subterranean fauna genesis in Europe. The Pannonian Plain (mainly covered by Hungary) in Central Europe, once being the area of the Paratethys, is a key area for Niphargus diversification. However, our knowledge on Hungarian species of Niphargus is primarily based on sporadic taxonomical works from the pre-molecular era. Here, we studied 14 localities, covering the eight valid Hungarian species of Niphargus and including nine previously unstudied populations. Based on sequences of three gene fragments, we reconstructed their phylogeny using maximum likelihood and Bayesian approaches. We found that not all Hungarian species of Niphargus are closely related, and even species sampled at the same localities can belong to different clades. Some Hungarian species form monophyletic clades, while others are nested in various non-Hungarian lineages. The new populations are all genetically distinct from the known species. Our results suggest that the Hungarian Niphargus fauna has originated from seven unrelated clades and its diversity is underestimated due to unknown populations and cryptic species. The detection of genetically distinct species of Niphargus from non-carbonate regions calls for further research efforts. The high diversity and the number of putative new species in the N. tatrensis clade warrants further, high-resolution phylogenetic studies.

Funder

Hungarian National Research, Development and Innovation Fund

Slovenian Research Agency

Ministry of Innovation and Technology

Publisher

MDPI AG

Subject

Nature and Landscape Conservation,Agricultural and Biological Sciences (miscellaneous),Ecological Modeling,Ecology

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