The haploid nuclear genome size (1C DNA) of vascular land plants varies over several orders of magnitude. Much of this observed diversity in genome size is due to the proliferation and deletion of transposable elements. To date, all vascular land plant lineages with extremely small nuclear genomes represent recently derived states, having ancestors with much larger genome sizes. The Selaginellaceae represent an ancient lineage with extremely small genomes. It is unclear how small nuclear genomes evolved in Selaginella. We compared the rates of nuclear genome size evolution in Selaginella and major vascular plant clades in a comparative phylogenetic framework. For the analyses, we collected 29 new flow cytometry estimates of haploid genome s...
Nuclear DNA content (genome size) is one of the basic characteristics of living organisms. In the An...
The purpose of this study is to evaluate the existing knowledge on the evolution of genome size and ...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...
The haploid nuclear genome size (1C DNA) of vascular land plants varies over several orders of magni...
The haploid nuclear genome size (1C DNA) of vascular land plants varies over several orders of magni...
The evolutionary processes responsible for generating and maintaining the remarkable diversity of li...
Abstract: Estimates of nuclear genome size for 9 Selaginella species were obtained using flow cytome...
Vascular plants appeared ~410 million years ago, then diverged into several lineages of which only t...
Vascular plants appeared ~410 million years ago then diverged into several lineages of which only tw...
Vascular plants appeared ∼410 million years ago, then diverged into several lineages of which only t...
Hybridization and polyploidization are common evolutionary processes in vascular plants. Both proces...
Genome sizes may vary by orders of magnitude among relatively closely related species. Gene and geno...
The effects of chromosome rearrangement on genome size are poorly understood. While chromosome dupli...
Genome size is a biodiversity trait that shows staggering diversity across eukaryotes, varying over ...
Nuclear DNA content (genome size) is one of the basic characteristics of living organisms. In the An...
The purpose of this study is to evaluate the existing knowledge on the evolution of genome size and ...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...
The haploid nuclear genome size (1C DNA) of vascular land plants varies over several orders of magni...
The haploid nuclear genome size (1C DNA) of vascular land plants varies over several orders of magni...
The evolutionary processes responsible for generating and maintaining the remarkable diversity of li...
Abstract: Estimates of nuclear genome size for 9 Selaginella species were obtained using flow cytome...
Vascular plants appeared ~410 million years ago, then diverged into several lineages of which only t...
Vascular plants appeared ~410 million years ago then diverged into several lineages of which only tw...
Vascular plants appeared ∼410 million years ago, then diverged into several lineages of which only t...
Hybridization and polyploidization are common evolutionary processes in vascular plants. Both proces...
Genome sizes may vary by orders of magnitude among relatively closely related species. Gene and geno...
The effects of chromosome rearrangement on genome size are poorly understood. While chromosome dupli...
Genome size is a biodiversity trait that shows staggering diversity across eukaryotes, varying over ...
Nuclear DNA content (genome size) is one of the basic characteristics of living organisms. In the An...
The purpose of this study is to evaluate the existing knowledge on the evolution of genome size and ...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...