Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification and speciation. Investigating chromosome number evolution commonly entails ancestral state reconstruction performed within a phylogenetic framework, which is, however, prone to uncertainty, whose effects on evolutionary inferences are insufficiently understood. Using the chromosomally diverse plant genus Melampodium (Asteraceae) as model group, we assess the impact of reconstruction method (maximum parsimony, maximum likelihood, Bayesian methods), branch length model (phylograms versus chronograms) and phylogenetic uncertainty (topological and branch length uncertainty) on the inference of chromosome number evolution. We also address the sui...
The effects of chromosome rearrangement on genome size are poorly understood. While chromosome dupli...
There is a rising awareness that species trees are best inferred from multiple loci while taking int...
The chromosome number in Poaceae has changed widely over 77 Myr of evolution and polyploidization. C...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
<div><p>Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversi...
Chromosome number is a key feature of the higher-order organization of the genome, and changes in ch...
Chromosome number is a key feature of the higher-order organization of the genome, and changes in ch...
Allopolyploidy has played an important role in the evolution of the flowering plants. Genome mergers...
Chromosome number changes during the evolution of angiosperms are likely to have played a major role...
Polyploidy, an important factor in eukaryotic evolution, is especially abundant in angiosperms, wher...
Chromosome number and genome variation in flowering plants have stimulated growing speculation about...
The effects of chromosome rearrangement on genome size are poorly understood. While chromosome dupli...
There is a rising awareness that species trees are best inferred from multiple loci while taking int...
The chromosome number in Poaceae has changed widely over 77 Myr of evolution and polyploidization. C...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversification...
<div><p>Chromosome number change (polyploidy and dysploidy) plays an important role in plant diversi...
Chromosome number is a key feature of the higher-order organization of the genome, and changes in ch...
Chromosome number is a key feature of the higher-order organization of the genome, and changes in ch...
Allopolyploidy has played an important role in the evolution of the flowering plants. Genome mergers...
Chromosome number changes during the evolution of angiosperms are likely to have played a major role...
Polyploidy, an important factor in eukaryotic evolution, is especially abundant in angiosperms, wher...
Chromosome number and genome variation in flowering plants have stimulated growing speculation about...
The effects of chromosome rearrangement on genome size are poorly understood. While chromosome dupli...
There is a rising awareness that species trees are best inferred from multiple loci while taking int...
The chromosome number in Poaceae has changed widely over 77 Myr of evolution and polyploidization. C...