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Updated: May 25, 2026

Tissue Collection of Bats for -Omics Analyses and Primary Cell Culture
Published on: October 23, 2019
Parasites reveal movement of bats between the New and Old Worlds
Patrick B Hamilton1, Catriona Cruickshank, Jamie R Stevens
1School of Biosciences, University of Exeter, Exeter, Devon EX4 4PS, UK. p.b.hamilton@exeter.ac.uk
Abstract:
The global distribution of bat taxa indicates that the Atlantic and Pacific Oceans are effective barriers to movement between the Old and New Worlds. For instance, one of the major suborders, Yinpterochiroptera, has an exclusively Old World distribution, and within the other, Yangochiroptera, no species and only five genera are common to both. However, as bats are sometimes blown out to sea, and have colonised isolated islands, occasional natural movement between the New and Old Worlds does appear to be possible. Here we identify new genotypes of a blood parasite, Trypanosoma dionisii, in Old World bats that are closely related to South American strains. Using highly conservative calibration points, divergence of Old and New World strains is estimated to have occurred 3.2-5.0 million years ago (MYA), depending on the method used (upper 95% CL for maximum time 11.4MYA). The true date of divergence is likely to be considerably more recent. These results demonstrate that taxon-specific parasites can indicate historical movements of their hosts, even where their hosts may have left no lasting phylogenetic footprint.
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