Populus trichocarpa is an ecologically important tree across western North America. We used a large population sample of 498 accessions over a wide geographical area genotyped with a 34K Populus SNP array to quantify geographical patterns of genetic variation in this species (landscape genomics). We present evidence that three processes contribute to the observed patterns: (1) introgression from the sister species P. balsamifera (2) isolation-by-distance and (3) natural selection. Introgression was detected only at the margins of the species’ distribution. Isolation-by-distance was significant across the sampled area as a whole, but no evidence of restricted gene flow was detected in a core of drainages from southern British Columbia. We id...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Introgression can introduce novel genetic variation at a faster rate than mutation alone, and result...
Populus trichocarpa is an ecologically important tree across western North America. We used a large ...
Local adaptation is pervasive in forest trees, which are characterized by large effective population...
Local adaptation is pervasive in forest trees, which are characterized by large effective population...
Genetic diversity is a key factor in species survival, evolution, and adaptation. It also reveals sp...
Rapid range expansions can cause pervasive changes in the genetic diversity and structure of populat...
Rapid range expansions can cause pervasive changes in the genetic diversity and structure of populat...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Plant population genomics informs evolutionary biology, breeding, conservation and bioenergy feedsto...
Plant population genomics informs evolutionary biology, breeding, conservation and bioenergy feedsto...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Introgression can introduce novel genetic variation at a faster rate than mutation alone, and result...
Populus trichocarpa is an ecologically important tree across western North America. We used a large ...
Local adaptation is pervasive in forest trees, which are characterized by large effective population...
Local adaptation is pervasive in forest trees, which are characterized by large effective population...
Genetic diversity is a key factor in species survival, evolution, and adaptation. It also reveals sp...
Rapid range expansions can cause pervasive changes in the genetic diversity and structure of populat...
Rapid range expansions can cause pervasive changes in the genetic diversity and structure of populat...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Speciation often involves repeated episodes of genetic contact between divergent populations before ...
Plant population genomics informs evolutionary biology, breeding, conservation and bioenergy feedsto...
Plant population genomics informs evolutionary biology, breeding, conservation and bioenergy feedsto...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Temperate forest tree species that span large geographical areas and climatic gradients often have h...
Introgression can introduce novel genetic variation at a faster rate than mutation alone, and result...