Plants exhibit an extraordinary range of genome sizes, varying by > 2000-fold between the smallest and largest recorded values. In the absence of polyploidy, changes in the amount of repetitive DNA (transposable elements and tandem repeats) are primarily responsible for genome size differences between species. However, there is ongoing debate regarding the relative importance of amplification of repetitive DNA versus its deletion in governing genome size. Using data from 454 sequencing, we analysed the most repetitive fraction of some of the largest known genomes for diploid plant species, from members of Fritillaria. We revealed that genomic expansion has not resulted from the recent massive amplification of just a handful of repeat famili...
Background: Homosporous ferns are distinctive amongst the land plant lineages for their high chromos...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...
Summary Recent advances have highlighted the ubiquity of whole-genome duplication (polyploidy) in an...
This is an open access article under the terms of the Creative Commons Attribution License, which pe...
This is an open access article under the terms of the Creative Commons Attribution License, which pe...
<div><p>The differential accumulation and elimination of repetitive DNA are key drivers of genome si...
The differential accumulation and elimination of repetitive DNA are key drivers of genome size varia...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Genome sizes vary considerably across all eukaryotes and even among closely related species. The gen...
Genome size varies c. 2400-fold in angiosperms (flowering plants), although the range of genome size...
Plant genome size variation is a dynamic process of bloating and purging DNA.While it was thought pl...
Although the number of protein-coding genes is not highly variable between plant taxa, the DNA conte...
• Background and Aims If large genomes are truly saturated with unnecessary ‘junk’ DNA, it would see...
Given the 2,400-fold range of genome sizes (0.06–148.9 Gbp (gigabase pair)) of seed plants (angiospe...
Background: Homosporous ferns are distinctive amongst the land plant lineages for their high chromos...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...
Summary Recent advances have highlighted the ubiquity of whole-genome duplication (polyploidy) in an...
This is an open access article under the terms of the Creative Commons Attribution License, which pe...
This is an open access article under the terms of the Creative Commons Attribution License, which pe...
<div><p>The differential accumulation and elimination of repetitive DNA are key drivers of genome si...
The differential accumulation and elimination of repetitive DNA are key drivers of genome size varia...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Genome sizes vary considerably across all eukaryotes and even among closely related species. The gen...
Genome size varies c. 2400-fold in angiosperms (flowering plants), although the range of genome size...
Plant genome size variation is a dynamic process of bloating and purging DNA.While it was thought pl...
Although the number of protein-coding genes is not highly variable between plant taxa, the DNA conte...
• Background and Aims If large genomes are truly saturated with unnecessary ‘junk’ DNA, it would see...
Given the 2,400-fold range of genome sizes (0.06–148.9 Gbp (gigabase pair)) of seed plants (angiospe...
Background: Homosporous ferns are distinctive amongst the land plant lineages for their high chromos...
Genome sizes of plants have long piqued the interest of researchers due to the vast differences amon...
Summary Recent advances have highlighted the ubiquity of whole-genome duplication (polyploidy) in an...