Divergent lineages in the heath mouse (Pseudomys shortridgei) are indicative of major contraction to geographically isolated refugia on the eastern and western sides of Australia during the early Pleistocene
Maria Salinas A , Michael Bunce B , Damien Cancilla B , Deryn L. Alpers B and Peter B. S. Spencer B CA Departament de Ciència Animal i dels Aliments, Facultat de Veterinària, Universitat Autònoma de Barcelona, 08193 Bellaterra (Barcelona), Spain.
B Biological Sciences and Biotechnology, Murdoch University, Murdoch, Perth, Western Australia 6150, Australia.
C Corresponding author. Email: p.spencer@murdoch.edu.au
Australian Journal of Zoology 57(1) 41-47 https://doi.org/10.1071/ZO08097
Submitted: 15 December 2008 Accepted: 11 April 2009 Published: 26 May 2009
Abstract
The heath mouse (Pseudomys shortridgei) is a locally rare species; it was considered extinct in Western Australia until its rediscovery 20 years ago. It is not often detected in faunal surveys and is confined to two ecologically distinct habitats on either side of the Australian continent. An important and immediate conservation question has been to determine the genetic diversity within each of its current habitats and to determine the differences between the geographically separate populations. Measures of genetic differentiation amongst P. shortridgei populations in their eastern (Victoria) and western (Western Australia) distribution were estimated using nuclear (microsatellite loci) and partial sequence of mitochondrial DNA (427 bp Cytochrome b gene and 637 bp of the D-loop). Both markers identified differences between the east- and west-coast populations. MtDNA data showed significant divergence between populations with monophyly within them, and nuclear loci investigated also showed two clear genetic clusters based on Bayesian inference. As a result of these findings, we suggest that the heath mouse comprises two highly divergent (but genetically diverse) lineages and the aridity of the Nullarbor Plain has clearly been a barrier for dispersal since the early Pleistocene (~1.43 million years ago). The populations either side of the Nullarbor Plain are genetically differentiated and should be defined as separate Evolutionary Significant Units (ESUs).
Additional keywords: aridity, distribution, microsatellite, mitochondrial DNA, rodent.
Acknowledgements
We sincerely thank Neil Burrows, Brent Johnson and Keith Morris of the Department of Environment and Conservation, Murdoch University, and the Universitat Autònoma de Barcelona for financial support. MB acknowledges the support of the ARC (DP0771971).
Alacs, E. , Alpers, D. L. , De Tores, P. J. , Dillon, M. , and Spencer, P. B. S. (2003). Identifying the presence of quokkas (Setonix brachyurus) and other macropods using cytochrome b analyses from faeces. Wildlife Research 30, 41–47.
| Crossref | GoogleScholarGoogle Scholar |
Baverstock, P. R. , Watts, C. H. S. , Adams, M. , and Cole, S. R. (1981). Genetical relationships among Australian rodents (Muridae). Australian Journal of Zoology 29, 289–303.
| Crossref | GoogleScholarGoogle Scholar |
Baynes, A. , Chapman, A. , and Lynam, A. J. (1987). The rediscovery, after 56 years, of the heath rat Pseudomys shortridgei (Thomas 1907) in Western Australia. Records of the Western Australian Museum 13, 319–322.
Butler, W. H. , and Merrilees, D. (1971). Remains of Potorous platyops (Marsupialia, Macropodidae) and other mammals from Bremer Bay, Western Australia. Journal of the Royal Society of Western Australia 54, 53–58.
Pariset, L. , Cappuccio, I. , Ajmone Marsan, P. , Dunner, S. , and Luikart, G, , et al. (2006). Assessment of population structure by single nucleotide polymorphisms (SNPs) in goat breeds. Journal of Chromatography. A 833, 117–120.
| CAS |
Taylor, A. C. , Sunnucks, P. , and Cooper, D. W. (1999). Retention of reproductive barriers and ecological differences between two introduced sympatric Macropus spp. in New Zealand. Animal Conservation 2, 195–202.
| Crossref | GoogleScholarGoogle Scholar |
Van Oosterhout, C. V. , Hutchinson, W. F. , Wills, D. P. M. , and Shipley, P. (2004). Micro-Checker: software for identifying and correcting genotyping errors in microsatellite data. Molecular Ecology Notes 4, 535–538.
| Crossref | GoogleScholarGoogle Scholar | CAS |
Weir, B. S. , and Cockerham, C. C. (1984). Estimating F-statistic for the analysis of population structure. Evolution 38, 1358–1370.
| Crossref | GoogleScholarGoogle Scholar |