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Phylogenetic relationships of <i>Betula</i> species (Betulaceae) based on nuclear <i>A</i><i>D</i><i>H</i> and chloroplast <i>mat</i><i>K</i> sequences
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References
2004
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BotanyGenus BetulaGeneticsDna SequencesGenomicsPhylogenetic AnalysisPhylogeneticsMolecular EcologySubgenus BetulaPhylogeny ComparisonPhylogenetic RelationshipsGenetic VariationPhylogenomicsPlant TaxonomyBiologyNatural SciencesEvolutionary BiologyPhylogenetic MethodSymbiosisMedicinePlant Phylogeny
The phylogenetic relationships within the genus Betula (Betulaceae) were investigated using a part of the nuclear ADH gene and DNA sequences of the chloroplast matK gene with parts of its flanking regions. Two well-supported phylogenetic groups could be identified in the chloroplast DNA sequence: one containing the three American species B. lenta, B. alleghaniensis, and B. papyrifera and the other including all the other species studied. The ADH gene displayed more variation, and three main groups could be identified. In disagreement with the classical division of the genus Betula, B. schmidtii and B. nana grouped with the species in subgenus Betula, and B. ermanii grouped with species in subgenus Chamaebetula, including B. humilis and B. fruticosa. The ADH phylogeny suggests that several independent polyploidizations within the genus Betula could have taken place. The ADH and chloroplast phylogenies were in part incongruent due to the placement of B. papyrifera. The most likely reason for this seems to be cytoplasmic introgression.
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