De novo assembly of a eukaryotic genome with next-generation sequencing data is still a challenging task. Over the past few years several assemblers have been developed, often suitable for one specific type of sequencing data. The number of known genomes is expanding rapidly, therefore it becomes possible to use multiple reference genomes for assembly projects. We introduce an assembly integrator that makes use of all available data, i.e. multiple de novo assemblies and mappings against multiple related genomes, by optimizing a weighted combination of criteria. Results: The developed algorithm was applied on the de novo sequencing of the Saccharomyces cerevisiae CEN.PK 113-7D strain. Using Solexa and 454 read data, two de novo and three com...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
There is a rapidly increasing amount of de novo genome assembly using next-generation sequencing (NG...
De novo assembly of a eukaryotic genome with next-generation sequencing data is still a challenging ...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
Abstract Background The development of next-generation sequencing has made it possible to sequence w...
We study data-efficient and also practical de-novo genome assembly algorithm. Due to the advancement...
Despite the prodigious throughput of the sequencing instruments currently on the market, the assembl...
<div><p>Remarkable advances in DNA sequencing technology have created a need for <em>de novo</em> ge...
The advent of next-generation sequencing technologies is accompanied with the development of many wh...
Next-generation sequencing (NGS) platforms have presented unique challenges to the computing communi...
Selecting the values of parameters used by de novo genomic assembly programs, or choosing an optimal...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The enormous amount of short reads produced by next generation sequencing (NGS) techniques such as R...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
There is a rapidly increasing amount of de novo genome assembly using next-generation sequencing (NG...
De novo assembly of a eukaryotic genome with next-generation sequencing data is still a challenging ...
BackgroundGenomic data have become major resources to understand complex mechanisms at fine-scale te...
Abstract Background The development of next-generation sequencing has made it possible to sequence w...
We study data-efficient and also practical de-novo genome assembly algorithm. Due to the advancement...
Despite the prodigious throughput of the sequencing instruments currently on the market, the assembl...
<div><p>Remarkable advances in DNA sequencing technology have created a need for <em>de novo</em> ge...
The advent of next-generation sequencing technologies is accompanied with the development of many wh...
Next-generation sequencing (NGS) platforms have presented unique challenges to the computing communi...
Selecting the values of parameters used by de novo genomic assembly programs, or choosing an optimal...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The enormous amount of short reads produced by next generation sequencing (NGS) techniques such as R...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
There is a rapidly increasing amount of de novo genome assembly using next-generation sequencing (NG...