Old lake versus young taxa: a comparative phylogeographic perspective on the evolution of Caspian Sea gastropods (Neritidae: Theodoxus )

Author:

Sands Arthur F.1ORCID,Neubauer Thomas A.12ORCID,Nasibi Saeid3ORCID,Harandi Majid Fasihi3ORCID,Anistratenko Vitaliy V.4ORCID,Wilke Thomas1ORCID,Albrecht Christian1ORCID

Affiliation:

1. Department of Animal Ecology and Systematics, Justus Liebig University Giessen, Heinrich-Buff-Ring 26–32 (IFZ), 35392 Giessen, Germany

2. Naturalis Biodiversity Centre, PO Box 9517, 2300 Leiden, The Netherlands

3. Research Center for Hydatid Disease in Iran, School of Medicine, Kerman University of Medical Sciences, Kerman 76169-14115, Iran

4. I.I. Schmalhausen Institute of Zoology of the National Academy of Sciences of Ukraine, B. Khmelnitsky Street, 15, Kiev 01030, Ukraine

Abstract

The Caspian Sea has been a highly dynamic environment throughout the Quaternary and witnessed major oscillations in lake level, which were associated with changes in salinity and habitat availability. Such environmental pressures are considered to drive strong phylogeographic structures in species by forcing populations into suitable refugia. However, little is actually known on the effect of lake-level fluctuations in the Caspian Sea on its aquatic biota. We compared the phylogeographic patterns of the aquatic Neritidae snail genus Theodoxus across the Pontocaspian region with refugial populations in southern Iran. Three gene fragments were used to determine relationships and divergence times between the sampled populations in both groups. A dated phylogeny and statistical haplotype networks were generated in conjunction with the analyses of molecular variance and calculations of isolation by distance using distance-based redundancy analyses. Extended Bayesian skyline plots were constructed to assess demographic history. Compared with the southern Iranian populations, we found little phylogeographic structure for the Pontocaspian Theodoxus group, with more recent diversification, homogeneity of haplotypes across the Pontocaspian region and a relatively stable demographic history since the Middle Pleistocene. Our results argue against a strong influence of Caspian Sea low stands on the population structure post the early Pleistocene, whereas high stands may have increased the dispersal possibilities and homogenization of haplotypes across the Pontocaspian region during this time. However, during the early Pleistocene, a more dramatic low stand in the Caspian Sea, around a million years ago, may have caused the reduction in Theodoxus diversity to a single lineage in the region. In addition, our results provide new insights into Theodoxus taxonomy and outlooks for regional conservation.

Funder

Alexander von Humboldt-Stiftung

H2020 Marie Skłodowska-Curie Actions

Publisher

The Royal Society

Subject

Multidisciplinary

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