Repetitive DNA has an important role in angiosperm genomes and is relevant to our understanding of genome size variation, polyploidisation and genome dynamics more broadly. Much recent work has harnessed the power of high-throughput sequencing (HTS) technologies to advance the study of repetitive DNA in flowering plants. Herbarium collections provide a useful historical perspective on genome diversity through time, but their value for the study of repetitive DNA has not yet been explored. We propose that herbarium DNA may prove as useful for studies of repetitive DNA content as it has for reconstructed organellar genomes and low-copy nuclear sequence data. Here we present a case study in the tobacco genus (Nicotiana; Solanaceae), showing th...
Ultra-high-throughput sequencing (UHTS) techniques are evolving rapidly and may soon become an affor...
PhDThe advent of next-generation (or high-throughput) sequencing (NGS/HTS) has revolutionised biol...
The differential accumulation and elimination of repetitive DNA are key drivers of genome size varia...
Repetitive DNA has an important role in angiosperm genomes and is relevant to our understanding of g...
Repetitive DNA has an important role in angiosperm genomes and is relevant to our understanding of g...
High-throughput sequencing data have transformed molecular phylogenetics and a plethora of phylogeno...
In the last years, genome skimming, the sequencing of genomic DNA at low-coverage, emerged as a suc...
High-throughput DNA sequencing (HTS) presents great opportunities for plant systematics, yet genomic...
Allopolyploidy is acknowledged as an important force in plant evolution. Frequent allopolyploidy in ...
PhDAllopolyploidy, interspecific hybridisation coupled with genome multiplication, is a prevailing...
NERC© 2015 The Authors. Biological Journal of the Linnean Society published by John Wiley & Sons Ltd...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Herbarium genomics, allowing testing of historic biological hypotheses in plant science, is a promis...
Abstract Background Simple sequence repeats (SSRs) are tandem repeats of DNA that have been used to ...
The world’s herbaria collectively house millions of diverse plant specimens, including endangered or...
Ultra-high-throughput sequencing (UHTS) techniques are evolving rapidly and may soon become an affor...
PhDThe advent of next-generation (or high-throughput) sequencing (NGS/HTS) has revolutionised biol...
The differential accumulation and elimination of repetitive DNA are key drivers of genome size varia...
Repetitive DNA has an important role in angiosperm genomes and is relevant to our understanding of g...
Repetitive DNA has an important role in angiosperm genomes and is relevant to our understanding of g...
High-throughput sequencing data have transformed molecular phylogenetics and a plethora of phylogeno...
In the last years, genome skimming, the sequencing of genomic DNA at low-coverage, emerged as a suc...
High-throughput DNA sequencing (HTS) presents great opportunities for plant systematics, yet genomic...
Allopolyploidy is acknowledged as an important force in plant evolution. Frequent allopolyploidy in ...
PhDAllopolyploidy, interspecific hybridisation coupled with genome multiplication, is a prevailing...
NERC© 2015 The Authors. Biological Journal of the Linnean Society published by John Wiley & Sons Ltd...
Plant genomes are highly diverse in size and repetitive DNA composition. In the absence of polyploid...
Herbarium genomics, allowing testing of historic biological hypotheses in plant science, is a promis...
Abstract Background Simple sequence repeats (SSRs) are tandem repeats of DNA that have been used to ...
The world’s herbaria collectively house millions of diverse plant specimens, including endangered or...
Ultra-high-throughput sequencing (UHTS) techniques are evolving rapidly and may soon become an affor...
PhDThe advent of next-generation (or high-throughput) sequencing (NGS/HTS) has revolutionised biol...
The differential accumulation and elimination of repetitive DNA are key drivers of genome size varia...