Species range shifts in response to climate and land use change are commonly forecasted with species distribution models based on species occurrence or abundance data. Although appealing, these models ignore the genetic structure of species, and the fact that different populations might respond in different ways due to adaptation to their environment. Here, we introduced ancestry distribution models, i.e., statistical models of the spatial distribution of ancestry proportions, for forecasting intra-specific changes based on genetic admixture instead of species occurrence data. Using multi-locus genotypes and extensive geographic coverage of distribution data across the European Alps, we applied this approach to 20 alpine plant species consi...
Cold-adapted taxa are experiencing severe range shifts due to climate change and are expected to suf...
Populations occurring in areas of overlap between the current and future distribution of a species a...
Climatic niche shifts have been documented in a number of invasive species by comparing the native a...
Species range shifts in response to climate and land use change are commonly forecasted with species...
International audienceSpecies range shifts in response to climate and land use change are commonly f...
The authors incorporate intraspecific variation into a dynamic range model to predict the consequenc...
Genetic diversity provides insight into heterogeneous demographic and adaptive history across organi...
A plant species' genetic population structure is the result of a complex combination of its life his...
Genetic responses to environmental changes take place at different spatial scales. While the effect ...
Forest trees dominate many Alpine landscapes that are currently exposed to changing climate. Norway ...
Warming in mountain regions is projected to be three times faster than the global average. Pronounce...
The European Alpine system is an extensive mountain range, whose heterogeneous landscape together wi...
Whether the distribution and assembly of plant species are adapted to current climates or legacy eff...
Phenological shifts, changes in the seasonal timing of life cycle events, are among the best documen...
Cold-adapted taxa are experiencing severe range shifts due to climate change and are expected to suf...
Populations occurring in areas of overlap between the current and future distribution of a species a...
Climatic niche shifts have been documented in a number of invasive species by comparing the native a...
Species range shifts in response to climate and land use change are commonly forecasted with species...
International audienceSpecies range shifts in response to climate and land use change are commonly f...
The authors incorporate intraspecific variation into a dynamic range model to predict the consequenc...
Genetic diversity provides insight into heterogeneous demographic and adaptive history across organi...
A plant species' genetic population structure is the result of a complex combination of its life his...
Genetic responses to environmental changes take place at different spatial scales. While the effect ...
Forest trees dominate many Alpine landscapes that are currently exposed to changing climate. Norway ...
Warming in mountain regions is projected to be three times faster than the global average. Pronounce...
The European Alpine system is an extensive mountain range, whose heterogeneous landscape together wi...
Whether the distribution and assembly of plant species are adapted to current climates or legacy eff...
Phenological shifts, changes in the seasonal timing of life cycle events, are among the best documen...
Cold-adapted taxa are experiencing severe range shifts due to climate change and are expected to suf...
Populations occurring in areas of overlap between the current and future distribution of a species a...
Climatic niche shifts have been documented in a number of invasive species by comparing the native a...