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Marine and Freshwater Research Marine and Freshwater Research Society
Advances in the aquatic sciences
RESEARCH ARTICLE

Patterns of connectivity between the Lake Eyre and Gulf drainages, Australia: a phylogeographic approach

Kate D. Masci A B , Mark Ponniah A and Jane M. Hughes A
+ Author Affiliations
- Author Affiliations

A Australian Rivers Institute, Griffith University, Nathan, Qld 4111, Australia.

B Corresponding author. Email: k.masci@griffith.edu.au

Marine and Freshwater Research 59(9) 751-760 https://doi.org/10.1071/MF07178
Submitted: 8 October 2007  Accepted: 14 June 2008   Published: 7 October 2008

Abstract

Historical barriers to dispersal in freshwater environments can be detected in the genetic structure of organisms living within these environments. Over time, it is possible that a barrier for freshwater organisms becomes passable, allowing gene flow between adjacent populations. The Lake Eyre and Gulf of Carpentaria Basins are adjacent drainages in northern Queensland. Low topography and large-scale flooding events make it possible that connectivity events may have occurred between the drainages throughout history. Documented geological evidence also suggests historical connectivity between the basins in the Pliocene. The present study looked at two widely distributed species, the freshwater fish Nematalosa erebi and the freshwater prawn Macrobrachium australiense, and used mitochondrial sequence data to assess past connectivity between the basins and estimate the timing of these events. Both species showed significant divergence across the drainage divide. There was evidence of two fragmentation events in the N. erebi data and divergence estimates for these events were 160 000 and 350 000 years ago. It was estimated that there has been no dispersal of M. australiense across the drainage divide for over one million years. The discordant evolutionary histories observed suggest that the patterns reflect recent historical environmental events and life-history differences between the two species.

Additional keywords: dryland rivers, Macrobrachium australiense, Nematalosa erebi, phylogeography.


Acknowledgements

Funding for the production of this manuscript was provided by the Centre for Riverine Landscapes. Fish were collected with ethics approval (AES/12/04/AEC) under Queensland Fisheries permit PRM00157K. The authors would like to thank Dr Daniel Schmidt for his assistance with analysis and general discussions about the project, Joel Huey for assisting with editing and field work, James Fawcett for assisting with field work, and Mia Hillyer for assisting with laboratory techniques.


References

Allen G. R., Midgley S. H., and Allen M. (2002). ‘Field Guide to the Freshwater Fishes of Australia.’ (Western Australian Museum: Perth.)

Avise J. C. (1994). ‘Molecular Markers, Natural History and Evolution.’ (Chapman and Hall: New York.)

Avise J. C. (2000). ‘Phylogeography: The History and Formation of Species.’ (Harvard University Press: Cambridge.)

Bermingham, E. , and Martin, A. P. (1998). Comparative mtDNA phylogeography of neotropical freshwater fishes: testing shared history to infer the evolutionary landscape of lower Central America. Molecular Ecology 7, 499–517.
Crossref | GoogleScholarGoogle Scholar | PubMed | Pusey B., Kennard M., and Arthington A. (2004). ‘Freshwater Fishes of North-Eastern Australia.’ (CSIRO Publishing: Collingwood.)

Roshier, D. A. , Whetton, P. H. , Allan, R. J. , and Robertson, A. I. (2001). Distribution and persistence of temporary wetland habitats in arid Australia in relation to climate. Austral Ecology 26, 371–384.
Crossref | GoogleScholarGoogle Scholar | Schneider S., Roessli D., and Excoffier L. (2000). ‘ARLEQUIN: Software for Population Genetics and Population Analysis (Version 2.00).’ (University of Geneva: Geneva.)

Short, J. W. (2004). A revision of Australian river prawns, Macrobrachium (Crustacea : Decapoda : Palaemonidae). Hydrobiologia 525, 1–100.
Crossref | GoogleScholarGoogle Scholar | Weatherley A. H. (1967). The inland waters of Australia: introductory Comments. In ‘Australian Inland Waters and their Fauna’. (Ed. A. H. Weatherley.) pp. 3–17. (Australian National University Press: Canberra.)

Williams W. D. (1967). The chemical characteristics of lentic surface waters. In ‘Australian Inland Waters and their Fauna’. (Ed. A. H. Weatherley.) pp. 18–77. (Australian National University Press: Canberra.)

Williams W. D. (1980). ‘Australian Freshwater Life. The Invertebrates of Australian Inland Waters.’ (Macmillian Publishing: Melbourne.)