Background: Whole genome duplication plays a central role in plant evolution. There are two main classes of polyploid formation: autopolyploids which arise within one species by doubling of similar homologous genomes; in contrast, allopolyploidy (hybrid polyploidy) arise via hybridization and subsequent doubling of nonhomologous (homoeologous) genomes. The distinction between polyploid origins can be made using gene phylogenies, if alleles from each genome can be correctly retrieved. We examined whether two closely related tetraploid Mediterranean shrubs (Medicago arborea and M. strasseri) have an allopolyploid origin - a question that has remained unsolved despite substantial previous research. We sequenced and analyzed ten low-copy nuclea...
Several well-documented evolutionary processes are known to cause conflict between species-level phy...
Abstract Background Hybridization is observed in many eukaryotic lineages and can lead to the format...
Background: Hybridization and polyploidy are potent forces that have regularly stimulated plant evol...
Background: Whole genome duplication plays a central role in plant evolution. There are two main cla...
Abstract Background Whole genome duplication plays a central role in plant evolution. There are two ...
Genome duplication is a common phenomenon in angiosperms and advances in sequencing technologies and...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
Polyploidy, an important factor in eukaryotic evolution, is especially abundant in angiosperms, wher...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
PREMISE OF THE STUDY: The stability of the bimodal karyotype found in Agave and closely related spec...
The role of polyploidy, particularly allopolyploidy, in plant diversification is a subject of debate...
<p>Polyploidy is a major driving force in angiosperm evolution, but our understanding of establishme...
<p>Polyploidy is a major driving force in angiosperm evolution, but our understanding of establishme...
Medicago truncatula is a model legume that has been extensively investigated in diverse subdisciplin...
Several well-documented evolutionary processes are known to cause conflict between species-level phy...
Abstract Background Hybridization is observed in many eukaryotic lineages and can lead to the format...
Background: Hybridization and polyploidy are potent forces that have regularly stimulated plant evol...
Background: Whole genome duplication plays a central role in plant evolution. There are two main cla...
Abstract Background Whole genome duplication plays a central role in plant evolution. There are two ...
Genome duplication is a common phenomenon in angiosperms and advances in sequencing technologies and...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
Polyploidy, an important factor in eukaryotic evolution, is especially abundant in angiosperms, wher...
Phylogenetic relationship of Medicago based on phased alleles and majority consensus sequences, gene...
PREMISE OF THE STUDY: The stability of the bimodal karyotype found in Agave and closely related spec...
The role of polyploidy, particularly allopolyploidy, in plant diversification is a subject of debate...
<p>Polyploidy is a major driving force in angiosperm evolution, but our understanding of establishme...
<p>Polyploidy is a major driving force in angiosperm evolution, but our understanding of establishme...
Medicago truncatula is a model legume that has been extensively investigated in diverse subdisciplin...
Several well-documented evolutionary processes are known to cause conflict between species-level phy...
Abstract Background Hybridization is observed in many eukaryotic lineages and can lead to the format...
Background: Hybridization and polyploidy are potent forces that have regularly stimulated plant evol...