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Cryptic hybridization between the ancient lineages of Natterer's bat (Myotis nattereri)

  • Darija Josić*
  • , Emrah Çoraman
  • , Isabelle Waurick
  • , Sören Franzenburg
  • , Leonardo Ancillotto
  • , Branka Bajić
  • , Ivana Budinski
  • , Christian Dietz
  • , Tamás Görföl
  • , Sofia I. Hayden Bofill
  • , Primož Presetnik
  • , Danilo Russo
  • , Martina Spada
  • , Vida Zrnčić
  • , Mozes P.K. Blom
  • , Frieder Mayer*
  • *Corresponding author for this work
  • Museum für Naturkunde - Leibniz Institute for Evolution and Biodiversity Science
  • Kiel University
  • University of Naples Federico II
  • University of Belgrade
  • Biologische Gutachten Dietz
  • Hungarian Natural History Museum
  • University of Pecs
  • Centre for Cartography of Fauna and Flora
  • University of Insubria
  • Croatian Biospeleogical Society Zagreb
  • Berlin-Brandenburg Institute of Advanced Biodiversity Research (BBIB)

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)

Abstract

Studying hybrid zones that form between morphologically cryptic taxa offers valuable insights into the mechanisms of cryptic speciation and the evolution of reproductive barriers. Although hybrid zones have long been the focus of evolutionary studies, the awareness of cryptic hybrid zones increased recently due to rapidly growing evidence of biological diversity lacking obvious phenotypic differentiation. The characterization of cryptic hybrid zones with genome-wide analysis is in its early stages and offers new perspectives for studying population admixture and thus the impact of gene flow. In this study, we investigate the population genomics of the Myotis nattereri complex in one of its secondary contact zones, where a putative hybrid zone is formed between two of its cryptic lineages. By utilizing a whole-genome shotgun sequencing approach, we aim to characterize this cryptic hybrid zone in detail. Demographic analysis suggests that the cryptic lineages diverged during the Pliocene, c. 3.6 million years ago. Despite this ancient separation, the populations in the contact zone exhibit mitochondrial introgression and a considerable amount of mixing in nuclear genomes. The genomic structure of the populations corresponds to geographic locations and the genomic admixture changes along a geographic gradient. These findings suggest that there is no effective hybridization barrier between both lineages, nevertheless, their population structure is shaped by dispersal barriers. Our findings highlight how such deeply diverged cryptic lineages can still readily hybridize in secondary contact.

Original languageEnglish
Article numbere17411
JournalMolecular Ecology
Volume33
Issue number13
DOIs
Publication statusPublished - Jul 2024

Bibliographical note

Publisher Copyright:
© 2024 The Author(s). Molecular Ecology published by John Wiley & Sons Ltd.

Keywords

  • bats
  • introgression
  • secondary contact
  • speciation

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