Extensive chloroplast introgression has been documented in polyploid Betula species of eastern North America. However, the extent to which the nuclear genomes of these species are differentiated is unknown. Therefore, we evaluated genetic differentiation among largely sympatric Betula papyrifera, B. alleghaniensis, and B. lenta using nuclear microsatellite markers. Principal components analysis (PCA) and analysis of molecular variation (AMOVA) were used to evaluate genetic differentiation. Bayesian model-based clustering was used to identify putatively admixed individuals. Despite a high incidence of allele sharing, all of the species were significantly differentiated even within zones of sympatry. A number of individuals were identified as...
Past reproductive interactions among incompletely isolated species may leave behind a trail of intro...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...
Extensive chloroplast introgression has been documented in polyploid Betula species of eastern North...
This study examines phylogeography, population genetics, and introgression in birches (Betula spp.) ...
<p>Hybridisation may lead to introgression of genes among species. Introgression may be bidirectiona...
Introgression allows polyploid species to acquire new genomic content from diploid progenitors or fr...
Birches (Betula spp.) hybridize readily, confounding genetic signatures of refugial isolation and po...
Hybridization may lead to introgression of genes among species. Introgression may be bidirectional o...
PhDTwo of the most rapid drivers of evolution are hybridisation and polyploidisation. Hybridisation ...
Hybridisation may lead to introgression of genes among species. Introgression may be bidirectional o...
Past reproductive interactions among incompletely isolated species may leave behind a trail of intro...
Background and Aims Differences in local abundance and ploidy level are predicted ...
PhDHybridisation and polyploidy are important in the evolution of species. The genus Betula L. is ...
Boreal and cool temperate forests are the major land cover of northern Eurasia, and information abou...
Past reproductive interactions among incompletely isolated species may leave behind a trail of intro...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...
Extensive chloroplast introgression has been documented in polyploid Betula species of eastern North...
This study examines phylogeography, population genetics, and introgression in birches (Betula spp.) ...
<p>Hybridisation may lead to introgression of genes among species. Introgression may be bidirectiona...
Introgression allows polyploid species to acquire new genomic content from diploid progenitors or fr...
Birches (Betula spp.) hybridize readily, confounding genetic signatures of refugial isolation and po...
Hybridization may lead to introgression of genes among species. Introgression may be bidirectional o...
PhDTwo of the most rapid drivers of evolution are hybridisation and polyploidisation. Hybridisation ...
Hybridisation may lead to introgression of genes among species. Introgression may be bidirectional o...
Past reproductive interactions among incompletely isolated species may leave behind a trail of intro...
Background and Aims Differences in local abundance and ploidy level are predicted ...
PhDHybridisation and polyploidy are important in the evolution of species. The genus Betula L. is ...
Boreal and cool temperate forests are the major land cover of northern Eurasia, and information abou...
Past reproductive interactions among incompletely isolated species may leave behind a trail of intro...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...
Numerous plant genera have a history including frequent hybridisation and polyploidisation (allopoly...