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Evolutionary history of the European free-tailed bat, a tropical affinity species spanning across the Mediterranean Basin

  • Francisco Amorim
  • , Orly Razgour
  • , Vanessa A. Mata
  • , Susana Lopes
  • , Raquel Godinho
  • , Carlos Ibáñez
  • , Javier Juste
  • , Stephen J. Rossiter
  • , Pedro Beja
  • , Hugo Rebelo

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

The Mediterranean Basin is a global biodiversity hotspot, hosting a number of native species belonging to families that are found almost exclusively in tropical climates. Yet, whether or not these taxa were able to survive in the Mediterranean region during the Quaternary climatic oscillations remains unknown. Focusing on the European free-tailed bat (Tadarida teniotis), we aimed to (a) identify potential ancient populations and glacial refugia; (b) determine the post-glacial colonization routes across the Mediterranean; and (c) evaluate current population structure and demography. Mitochondrial and nuclear markers were used to understand T. teniotis evolutionary and demographic history. We show that T. teniotis is likely restricted to the Western Palearctic, with mitochondrial phylogeny suggesting a split between an Anatolian/Middle East clade and a European clade. Nuclear data pointed to three genetic populations, one of which is an isolated and highly differentiated group in the Canary Islands, another distributed across Iberia, Morocco, and France, and a third stretching from Italy to the east, with admixture following a pattern of isolation by distance. Evolutionary and demographic reconstruction supports a pre-Last Glacial Maximum (LGM) colonization of Italy and the Anatolian/Middle East, while the remaining populations were colonized from Italy after the Younger Dryas. We also found support for demographic expansion following the Iberian colonization. The results show that during the LGM T. teniotis persisted in Mediterranean refugia and has subsequently expanded to its current circum-Mediterranean range. Our findings raise questions regarding the physiological and ecological traits that enabled species with tropical affinities to survive in colder climates.

Original languageEnglish
Pages (from-to)499-518
Number of pages20
JournalJournal of Zoological Systematics and Evolutionary Research
Volume58
Issue number1
DOIs
StatePublished - 1 Feb 2020
Externally publishedYes

Keywords

  • Molossidae
  • bat
  • demographic history
  • phylogeography
  • population structure

ASJC Scopus subject areas

  • Ecology, Evolution, Behavior and Systematics
  • Animal Science and Zoology
  • Molecular Biology
  • Genetics

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