Global climate is rapidly changing and the ability for tree species to adapt is dependent on standing genomic variation; however the distribution and abundance of functional and adaptive variants are poorly understood in natural systems. We test key hypotheses regarding the genetics of adaptive variation in a foundation tree: genomic variation is associated with climate and genomic variation is more likely to be associated with temperature than precipitation or aridity. To test these hypotheses, we used 9,593 independent, genomic single‐nucleotide polymorphisms (SNPs) from 270 individuals sampled from Corymbia calophylla’s entire distribution in southwestern Western Australia, spanning orthogonal temperature and precipitation gradients. Env...
The genetic consequences of adaptation to changing environments can be deciphered using population g...
Local climatic conditions likely constitute an important selective pressure on genes underlying impo...
Arabidopsis thaliana inhabits diverse climates and exhibits varied phenology across its range. Altho...
Global climate is rapidly changing and the ability for tree species to adapt is dependent on standin...
Global climate is rapidly changing, and the ability for tree species to adapt is dependent on standi...
Understanding whether populations can adapt in situ or whether interventions are required is of key ...
Temperature and precipitation regimes are rapidly changing, resulting in forest dieback and extincti...
Understanding whether populations can adapt in situ or whether interventions are required is of key ...
Understanding the capacity of forest tree species to adapt to climate change is of increasing import...
Understanding the capacity of forest tree species to adapt to climate change is of increasing import...
Climate models predict that temperature means will continuously increase globally, and that heatwave...
Significant climate changes are evident across Australia with declining rainfall and rising temperat...
Trees are a keystone species in many ecosystems and a critical component of ecological restoration. ...
Substantial climate changes are evident across Australia, with declining rainfall and rising tempera...
Patterns of adaptive variation within plant species are best studied through common garden experimen...
The genetic consequences of adaptation to changing environments can be deciphered using population g...
Local climatic conditions likely constitute an important selective pressure on genes underlying impo...
Arabidopsis thaliana inhabits diverse climates and exhibits varied phenology across its range. Altho...
Global climate is rapidly changing and the ability for tree species to adapt is dependent on standin...
Global climate is rapidly changing, and the ability for tree species to adapt is dependent on standi...
Understanding whether populations can adapt in situ or whether interventions are required is of key ...
Temperature and precipitation regimes are rapidly changing, resulting in forest dieback and extincti...
Understanding whether populations can adapt in situ or whether interventions are required is of key ...
Understanding the capacity of forest tree species to adapt to climate change is of increasing import...
Understanding the capacity of forest tree species to adapt to climate change is of increasing import...
Climate models predict that temperature means will continuously increase globally, and that heatwave...
Significant climate changes are evident across Australia with declining rainfall and rising temperat...
Trees are a keystone species in many ecosystems and a critical component of ecological restoration. ...
Substantial climate changes are evident across Australia, with declining rainfall and rising tempera...
Patterns of adaptive variation within plant species are best studied through common garden experimen...
The genetic consequences of adaptation to changing environments can be deciphered using population g...
Local climatic conditions likely constitute an important selective pressure on genes underlying impo...
Arabidopsis thaliana inhabits diverse climates and exhibits varied phenology across its range. Altho...