Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance estimation, which is particularly problematic when sample sizes of individuals are small. Unless uncertainty can be quantified, valuable but small datasets may be rendered unusable for conservation purposes. We offer a method to quantify uncertainty in landscape resistance estimates using multi-model inference as an improvement over single-model based inference. We illustrate the approach empirically using co-occurring, woodland-preferring Australian marsupials within a common study area: two arboreal gliders (Petaurus breviceps, and Petaurus norfolcensis) and one ground-dwelling Antechinus (Antechinus flavipes). First, we use maximum-likeliho...
Landscape genetics offers a powerful approach to understanding species’ dispersal patterns. However,...
Predicting the responses to natural selection is one of the key goals of evolutionary biology. Two o...
The predictions of stochastic metapopulation models of four species of arboreal marsupial were compa...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape resistance reflects how difficult it is for genes to move across an area with particular a...
A common approach used to estimate landscape resistance involves comparing correlations of ecologica...
Connectivity modeling and corridor identification are an essential part of landscape genetics and im...
Anthropogenic migration barriers fragment many populations and limit the ability of species to respo...
Landscape genetics aims to assess the effect of the landscape on intraspecific genetic structure. To...
Human-altered environments often challenge native species with a complex spatial distribution of res...
A major aim of landscape genetics is to understand how landscapes resist gene flow and thereby influ...
The predictions of stochastic metapopulation models of four species of arboreal marsupial were compa...
Landscape genetics offers a powerful approach to understanding species’ dispersal patterns. However,...
Predicting the responses to natural selection is one of the key goals of evolutionary biology. Two o...
The predictions of stochastic metapopulation models of four species of arboreal marsupial were compa...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape genetics lacks explicit methods for dealing with the uncertainty in landscape resistance e...
Landscape resistance reflects how difficult it is for genes to move across an area with particular a...
A common approach used to estimate landscape resistance involves comparing correlations of ecologica...
Connectivity modeling and corridor identification are an essential part of landscape genetics and im...
Anthropogenic migration barriers fragment many populations and limit the ability of species to respo...
Landscape genetics aims to assess the effect of the landscape on intraspecific genetic structure. To...
Human-altered environments often challenge native species with a complex spatial distribution of res...
A major aim of landscape genetics is to understand how landscapes resist gene flow and thereby influ...
The predictions of stochastic metapopulation models of four species of arboreal marsupial were compa...
Landscape genetics offers a powerful approach to understanding species’ dispersal patterns. However,...
Predicting the responses to natural selection is one of the key goals of evolutionary biology. Two o...
The predictions of stochastic metapopulation models of four species of arboreal marsupial were compa...