The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic engineering and systems biology research. Current genome assemblies are based on short-read sequencing data scaffolded based on homology to strain S288C. However, these assemblies contain large sequence gaps, particularly in subtelomeric regions, and the assumption of perfect homology to S288C for scaffolding introduces bias. In this study, we obtained a near-complete genome assembly of CEN.PK113–7D using only Oxford Nanopore Technology's MinION sequencing platform. Fifteen of the 16 chromosomes, the mitochondrial genome and the 2-μm plasmid are assembled in single contigs and all but one chromosome starts or ends in a telomere repeat. This impr...
© 2018 Nature Publishing Group. All rights reserved. We report the sequencing and assembly of a refe...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Long-read sequencing technologies such as Pacific Biosciences and Oxford Nanopore MinION are capable...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
Background: The introduction of the MinION sequencing device by Oxford Nanopore Technologies may gre...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
We report the sequencing and assembly of a reference genome for the human GM12878 Utah/Ceph cell lin...
We report the sequencing and assembly of a reference genome for the human GM12878 Utah/Ceph cell lin...
Monitoring the progress of DNA molecules through a membrane pore has been postulated as a method for...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
© 2018 Nature Publishing Group. All rights reserved. We report the sequencing and assembly of a refe...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Long-read sequencing technologies such as Pacific Biosciences and Oxford Nanopore MinION are capable...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
Background: The introduction of the MinION sequencing device by Oxford Nanopore Technologies may gre...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
We report the sequencing and assembly of a reference genome for the human GM12878 Utah/Ceph cell lin...
We report the sequencing and assembly of a reference genome for the human GM12878 Utah/Ceph cell lin...
Monitoring the progress of DNA molecules through a membrane pore has been postulated as a method for...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
Saccharomyces cerevisiae CEN.PK 113-7D is widely used for metabolic engineering and systems biology ...
© 2018 Nature Publishing Group. All rights reserved. We report the sequencing and assembly of a refe...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...