High dispersal in a frog species suggests that it is vulnerable to habitat fragmentation
- 22 March 2005
- journal article
- Published by The Royal Society in Biology Letters
- Vol. 1 (1) , 13-16
- https://doi.org/10.1098/rsbl.2004.0270
Abstract
Global losses of amphibian populations are a major conservation concern and their causes have generated substantial debate. Habitat fragmentation is considered one important cause of amphibian decline. However, if fragmentation is to be invoked as a mechanism of amphibian decline, it must first be established that dispersal is prevalent among contiguous amphibian populations using formal movement estimators. In contrast, if dispersal is naturally low in amphibians, fragmentation can be disregarded as a cause of amphibian declines and conservation efforts can be focused elsewhere. We examined dispersal rates in Columbia spotted frogs (Rana luteiventris) using capture-recapture analysis of over 10,000 frogs in combination with genetic analysis of microsatellite loci in replicate basins. We found that frogs had exceptionally high juvenile dispersal rates (up to 62% annually) over long distances (>5km), large elevation gains (>750m) and steep inclines (36 degrees incline over 2km) that were corroborated by genetic data showing high gene flow. These findings show that dispersal is an important life-history feature of some amphibians and suggest that habitat fragmentation is a serious threat to amphibian persistence.Keywords
This publication has 18 references indexed in Scilit:
- Population structure of Columbia spotted frogs (Rana luteiventris) is strongly affected by the landscapeMolecular Ecology, 2005
- The alluring simplicity and complex reality of genetic rescueTrends in Ecology & Evolution, 2004
- Clearcut logging restricts the movements of terrestrial Pacific giant salamanders (Dicamptodon tenebrosus Good)Canadian Journal of Zoology, 2002
- Spatially Autocorrelated Demography and Interpond Dispersal in the Salamander Ambystoma californienseEcology, 2001
- Metapopulation Dynamics and Amphibian ConservationConservation Biology, 2001
- Program MARK: survival estimation from populations of marked animalsBird Study, 1999
- Genetic substructuring as a result of barriers to gene flow in urban Rana temporaria (common frog) populations: implications for biodiversity conservationHeredity, 1997
- Amphibian Declines: Judging Stability, Persistence, and Susceptibility of Populations to Local and Global ExtinctionsConservation Biology, 1994
- Modeling Survival and Testing Biological Hypotheses Using Marked Animals: A Unified Approach with Case StudiesEcological Monographs, 1992
- Extinction and isolation gradients in metapopulations: the case of the pool frog (Rana lessonae)Biological Journal of the Linnean Society, 1991