Population structure of Columbia spotted frogs (Rana luteiventris) is strongly affected by the landscape
- 10 January 2005
- journal article
- research article
- Published by Wiley in Molecular Ecology
- Vol. 14 (2) , 483-496
- https://doi.org/10.1111/j.1365-294x.2005.02426.x
Abstract
Landscape features such as mountains, rivers, and ecological gradients may strongly affect patterns of dispersal and gene flow among populations and thereby shape population dynamics and evolutionary trajectories. The landscape may have a particularly strong effect on patterns of dispersal and gene flow in amphibians because amphibians are thought to have poor dispersal abilities. We examined genetic variation at six microsatellite loci in Columbia spotted frogs (Rana luteiventris) from 28 breeding ponds in western Montana and Idaho, USA, in order to investigate the effects of landscape structure on patterns of gene flow. We were particularly interested in addressing three questions: (i) do ridges act as barriers to gene flow? (ii) is gene flow restricted between low and high elevation ponds? (iii) does a pond equal a ‘randomly mating population’ (a deme)? We found that mountain ridges and elevational differences were associated with increased genetic differentiation among sites, suggesting that gene flow is restricted by ridges and elevation in this species. We also found that populations of Columbia spotted frogs generally include more than a single pond except for very isolated ponds. There was also evidence for surprisingly high levels of gene flow among low elevation sites separated by large distances. Moreover, genetic variation within populations was strongly negatively correlated with elevation, suggesting effective population sizes are much smaller at high elevation than at low elevation. Our results show that landscape features have a profound effect on patterns of genetic variation in Columbia spotted frogs.Keywords
This publication has 55 references indexed in Scilit:
- At‐sea distribution and scale‐dependent foraging behaviour of petrels and albatrosses: a comparative studyJournal of Animal Ecology, 2006
- High dispersal in a frog species suggests that it is vulnerable to habitat fragmentationBiology Letters, 2005
- FAST‐TRACK: Integrating QTL mapping and genome scans towards the characterization of candidate loci under parallel selection in the lake whitefish (Coregonus clupeaformis)Molecular Ecology, 2004
- FINE-SCALE POPULATION STRUCTURE IN THE WOOD FROG (RANA SYLVATICA) IN A NORTHERN WOODLANDHerpetologica, 2002
- Phylogeography and conservation genetics of the Columbia spotted frog (Rana luteiventris; Amphibia, Ranidae)Molecular Ecology, 2001
- Genetic Evidence for Wide Dispersal by the Sand Frog, Heleioporus psammophilus (Anura: Myobatrachidae), in Western AustraliaJournal of Herpetology, 2001
- Ridges and rivers: a test of competing hypotheses of Amazonian diversification using a dart-poison frog (Epipedobates femoralis)Proceedings Of The Royal Society B-Biological Sciences, 1999
- Influence of landscape on the population genetic structure of the alpine butterfly Parnassius smintheus (Papilionidae)Molecular Ecology, 1999
- Colonization of high-elevation lakes by long-toed salamanders (Ambystoma macrodactylum) after the extinction of introduced trout populationsCanadian Journal of Zoology, 1999
- Mobility and metapopulation structure of Geocrinia alba and Geocrinia vitellina, two endangered frog species from southwestern AustraliaAustralian Journal of Ecology, 1997