Motivation Among challenges that hamper reaping the benefits of genome assembly are both unfinished assemblies and the ensuing experimental costs. First, numerous software solutions for genome de novo assembly are available, each having its advantages and drawbacks, without clear guidelines as to how to choose among them. Second, these solutions produce draft assemblies that often require a resource intensive finishing phase. Methods In this paper we address these two aspects by developing Mix , a tool that mixes two or more draft assemblies, without relying on a reference genome and having the goal to reduce contig fragmentation and thus speed-up genome finishing. The proposed algorithm builds an extension graph where vertices represent ex...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Motivation: Among challenges that hamper reaping the benefits of genome assembly are both unfinished...
Motivation: Among challenges that hamper reaping the benefits of genome assembly are both unfinished...
Jünemann S, Prior K, Albersmeier A, et al. GABenchToB: A Genome Assembly Benchmark Tuned on Bacteria...
De novo genome assembly is the process of reconstructing a complete genomic sequence from countless ...
We study data-efficient and also practical de-novo genome assembly algorithm. Due to the advancement...
Genome assembly projects typically run multiple algorithms in an attempt to find the single best ass...
Background: In recent years more than 20 assemblers have been proposed to tackle the hard task of as...
The rapidly reducing cost of bacterial genome sequencing has lead to its routine use in large-scale ...
De novo genome assembly is a fundamental problem in genomics research. When assembling large genomes...
A genome sequence assembly provides the foundation for studies of genotypic and phenotypic variation...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Motivation: Among challenges that hamper reaping the benefits of genome assembly are both unfinished...
Motivation: Among challenges that hamper reaping the benefits of genome assembly are both unfinished...
Jünemann S, Prior K, Albersmeier A, et al. GABenchToB: A Genome Assembly Benchmark Tuned on Bacteria...
De novo genome assembly is the process of reconstructing a complete genomic sequence from countless ...
We study data-efficient and also practical de-novo genome assembly algorithm. Due to the advancement...
Genome assembly projects typically run multiple algorithms in an attempt to find the single best ass...
Background: In recent years more than 20 assemblers have been proposed to tackle the hard task of as...
The rapidly reducing cost of bacterial genome sequencing has lead to its routine use in large-scale ...
De novo genome assembly is a fundamental problem in genomics research. When assembling large genomes...
A genome sequence assembly provides the foundation for studies of genotypic and phenotypic variation...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
Genomic research relies on computers to process large amounts of genomic data. In order to digitize ...
The development of next-generation sequencing has made it possible to sequence whole genomes at a re...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...