Analyses of high-throughput transcriptome sequences of non-model organisms are based on two main approaches: de novo assembly and genome-guided assembly using mapping to assign reads prior to assembly. Given the limits of mapping reads to a reference when it is highly divergent, as is frequently the case for non-model species, we evaluate whether using blastn would outperform mapping methods for read assignment in such situations (>15% divergence). We demonstrate its high performance by using simulated reads of lengths corresponding to those generated by the most common sequencing platforms, and over a realistic range of genetic divergence (0% to 30% divergence). Here we focus on gene identification and not on resolving the whole set of tra...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
De novo transcriptome assemblies are required prior to analyzing RNA sequencing data from a species ...
High Throughput Sequencing capabilities have made the process of assembling a transcriptome easier, ...
AU was supported by a PhD grant from EDF (Electricite de France). We are grateful to the different d...
For vertebrate organisms where a reference genome is not available, de novo transcriptome assembly e...
Next-generation sequencing (NGS) technologies offer the opportunity for population genomic study of ...
<div><p>Transcriptomes are one of the first sources of high-throughput genomic data that have benefi...
Background: The lack of genomic resources can present challenges for studies of non-model organisms....
Abstract Background Until recently, read lengths on the Solexa/Illumina system were too short to rel...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
Next-generation sequencing (NGS) technologies offer the opportunity for population genomic study of ...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
Whole genome sequencing (WGS) is a very valuable resource to understand the evolutionary history of ...
Background: Until recently, read lengths on the Solexa/Illumina system were too short to reliably as...
Transcriptome Shotgun Sequencing (RNA-seq) has been readily embraced by geneticists and molecular ec...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
De novo transcriptome assemblies are required prior to analyzing RNA sequencing data from a species ...
High Throughput Sequencing capabilities have made the process of assembling a transcriptome easier, ...
AU was supported by a PhD grant from EDF (Electricite de France). We are grateful to the different d...
For vertebrate organisms where a reference genome is not available, de novo transcriptome assembly e...
Next-generation sequencing (NGS) technologies offer the opportunity for population genomic study of ...
<div><p>Transcriptomes are one of the first sources of high-throughput genomic data that have benefi...
Background: The lack of genomic resources can present challenges for studies of non-model organisms....
Abstract Background Until recently, read lengths on the Solexa/Illumina system were too short to rel...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
Next-generation sequencing (NGS) technologies offer the opportunity for population genomic study of ...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
Whole genome sequencing (WGS) is a very valuable resource to understand the evolutionary history of ...
Background: Until recently, read lengths on the Solexa/Illumina system were too short to reliably as...
Transcriptome Shotgun Sequencing (RNA-seq) has been readily embraced by geneticists and molecular ec...
A high-quality transcriptome is required to advance numerous bioinformatics workflows. Nevertheless,...
De novo transcriptome assemblies are required prior to analyzing RNA sequencing data from a species ...
High Throughput Sequencing capabilities have made the process of assembling a transcriptome easier, ...