DNA sequencing was dominated by Sanger’s chain-termination method until the mid-2000s, when it was progressively supplanted by new sequencing technologies that can generate much larger quantities of data in a shorter time. At the forefront of these developments, long-read sequencing technologies (third-generation sequencing) can produce reads that are several kilobases in length. This greatly improves the accuracy of genome assemblies by spanning the highly-repetitive segments that cause difficulty for second-generation short-read technologies. Third-generation sequencing is especially appealing for plant genomes, which can be extremely large with long stretches of highly-repetitive DNA. Until recently, the low basecalling accuracy of third...
Despite the progress made in DNA sequencing over the last decade, reconstructing telomere-to-telomer...
Background: Numerous completed or on-going whole genome sequencing projects have highlighted the fac...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Plant genomes generated by Sanger and Next Generation Sequencing (NGS) have provided insight into sp...
In the last decade a growing number of plant genomes have been obtained for species previously consi...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Recent advances in third-generation sequencing technologies are currently offering unprecedented pos...
The revolution of genome sequencing is continuing after the successful second-generation sequencing ...
Discovery of the DNA double helix represents one of the great milestones in biology. For plant resea...
A number of next-generation sequencing (NGS) technologies such as Roche/454, Illumina and AB SOLiD h...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Advances in DNA sequencing have made it easier to sequence and assemble plant genomes. Here, we exte...
BACKGROUND: Sequencing technologies have advanced to the point where it is possible to generate high...
Abstract Since the development of Sanger sequencing in 1977, sequencing technology has played a pivo...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Despite the progress made in DNA sequencing over the last decade, reconstructing telomere-to-telomer...
Background: Numerous completed or on-going whole genome sequencing projects have highlighted the fac...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Plant genomes generated by Sanger and Next Generation Sequencing (NGS) have provided insight into sp...
In the last decade a growing number of plant genomes have been obtained for species previously consi...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Recent advances in third-generation sequencing technologies are currently offering unprecedented pos...
The revolution of genome sequencing is continuing after the successful second-generation sequencing ...
Discovery of the DNA double helix represents one of the great milestones in biology. For plant resea...
A number of next-generation sequencing (NGS) technologies such as Roche/454, Illumina and AB SOLiD h...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Advances in DNA sequencing have made it easier to sequence and assemble plant genomes. Here, we exte...
BACKGROUND: Sequencing technologies have advanced to the point where it is possible to generate high...
Abstract Since the development of Sanger sequencing in 1977, sequencing technology has played a pivo...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Despite the progress made in DNA sequencing over the last decade, reconstructing telomere-to-telomer...
Background: Numerous completed or on-going whole genome sequencing projects have highlighted the fac...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...