Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche breadth, dispersal rates) and the scale of climatic fluctuations across the landscape. New capabilities in generating and analysing population genomic data, along with spatial modelling, have unleashed our capacity to infer how past climate changes have shaped populations, and by extension, complex communities. Combining these approaches, we uncover lineage diversity across four codistributed lizards from the Australian Monsoonal Tropics and explore how varying climatic tolerances interact with regional climate history to generate common vs. disparate responses to late Pleistocene change. We find more divergent spatial structuring and tempora...
Aim: Savanna biomes cover around 20% of land surfaces, yet the origins and processes that have shape...
Background: Congruent patterns in the distribution of biodiversity between regions or habitats sugge...
Understanding how natural populations will respond to rapid anthropogenic climate change is one of t...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Globally, montane tropical diversity is characterized by extraordinary local endemism that is not re...
Globally, montane tropical diversity is characterized by extraordinary local endemism that is not re...
It is a widely held assumption that populations historically restricted to mountain refugia tend to ...
Differences in the geographic scale and depth of phylogeographic structure across codistributed taxa...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim Focussing on pairs of sister species across three genera of scincid lizards, we use genomic evi...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim The exceptionally rich biodiversity found in tropical rainforest is under threat from anthropog...
Aim: Savanna biomes cover around 20% of land surfaces, yet the origins and processes that have shape...
Background: Congruent patterns in the distribution of biodiversity between regions or habitats sugge...
Understanding how natural populations will respond to rapid anthropogenic climate change is one of t...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Spatial responses of species to past climate change depend on both intrinsic traits (climatic niche ...
Globally, montane tropical diversity is characterized by extraordinary local endemism that is not re...
Globally, montane tropical diversity is characterized by extraordinary local endemism that is not re...
It is a widely held assumption that populations historically restricted to mountain refugia tend to ...
Differences in the geographic scale and depth of phylogeographic structure across codistributed taxa...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim Focussing on pairs of sister species across three genera of scincid lizards, we use genomic evi...
Aim The exceptionally rich biodiversity found in tropical rainforest is und...
Aim The exceptionally rich biodiversity found in tropical rainforest is under threat from anthropog...
Aim: Savanna biomes cover around 20% of land surfaces, yet the origins and processes that have shape...
Background: Congruent patterns in the distribution of biodiversity between regions or habitats sugge...
Understanding how natural populations will respond to rapid anthropogenic climate change is one of t...