Illumina sequencing has revolutionized yeast genomics, with prices for commercial draft genome sequencing now below $200. The popular SPAdes assembler makes it simple to generate a de novo genome assembly for any yeast species. However, whereas making genome assemblies has become routine, understanding what they contain is still challenging. Here, we show how graphing the information that SPAdes provides about the length and coverage of each scaffold can be used to investigate the nature of an assembly, and to diagnose possible problems. Scaffolds derived from mitochondrial DNA, ribosomal DNA, and yeast plasmids can be identified by their high coverage. Contaminating data, such as cross-contamination from other samples in a multiplex sequen...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
New sequencing technology has dramatically altered the landscape of whole-genome sequencing, allowin...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
De novo Genome assembly and k-mer frequency counting are two of the classical prob- lems of Bioinfo...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
Selecting the values of parameters used by de novo genomic assembly programs, or choosing an optimal...
High-throughput sequencing provides a fast and cost-effective mean to recover genomes of organisms f...
Background: The throughput of next-generation sequencing machines has increased dramatically over th...
The recent transition to Next-Generation Sequencing technology has accelerated the growth of genome ...
Long-read sequencing technologies such as Pacific Biosciences and Oxford Nanopore MinION are capable...
High-throughput DNA sequencing technologies are currently revolutionizing the fields of biology and ...
Contamination in sequenced genomes is a relatively common problem and several methods to remove non-...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
New sequencing technology has dramatically altered the landscape of whole-genome sequencing, allowin...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
De novo Genome assembly and k-mer frequency counting are two of the classical prob- lems of Bioinfo...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
Selecting the values of parameters used by de novo genomic assembly programs, or choosing an optimal...
High-throughput sequencing provides a fast and cost-effective mean to recover genomes of organisms f...
Background: The throughput of next-generation sequencing machines has increased dramatically over th...
The recent transition to Next-Generation Sequencing technology has accelerated the growth of genome ...
Long-read sequencing technologies such as Pacific Biosciences and Oxford Nanopore MinION are capable...
High-throughput DNA sequencing technologies are currently revolutionizing the fields of biology and ...
Contamination in sequenced genomes is a relatively common problem and several methods to remove non-...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
New sequencing technology has dramatically altered the landscape of whole-genome sequencing, allowin...
© The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attributi...