Sequence Independent Single Primer Amplification is one of the most widely used random amplification approaches in virology for sequencing template preparation. This technique relies on oligonucleotides consisting of a 39 random part used to prime complementary DNA synthesis and a 59 defined tag sequence for subsequent amplification. Recently, this amplification method was combined with next generation sequencing to obtain viral sequences. However, these studies showed a biased distribution of the resulting sequence reads over the analyzed genomes. The aim of this study was to elucidate the mechanisms that lead to biased sequence depth when using random amplification. Avian paramyxovirus type 8 was used as a model RNA virus to investigate t...
BGPI : équipe 2The invention of next generation sequencing techniques (NGS) marked the coming of a n...
BackgroundThe invention of the Genome Sequence 20 DNA Sequencing System (454 parallel sequencing pla...
Viruses can create complex genetic populations within a host, and deep sequencing technologies allow...
Sequence Independent Single Primer Amplification is one of the most widely used random amplification...
<p>Sequence Independent Single Primer Amplification is one of the most widely used random ampl...
Next generation sequencing (NGS)/deep sequencing has become an important tool in the study of viruse...
Background: Viruses are key players regulating microbial ecosystems. Exploration of viral assemblage...
ABSTRACT Validating the sampling depth and reducing sequencing errors are critical for studies of vi...
Massive, parallel sequencing is a potent tool for dissecting the regulation of biological processes ...
Background: Massive, parallel sequencing is a potent tool for dissecting the regulation of biologica...
Abstract: The ability to accurately characterize DNA variant proportions using PCR amplification is ...
Genetic analyses play a central role in infectious disease research. Massively parallelized “mechani...
Abstract Background In a high-throughput environment, to PCR amplify and sequence a large set of vir...
The development of modern and affordable sequencing technologies has allowed the study of viral popu...
Bias introduced by the simultaneous amplification of specific genes from complex mixtures of templat...
BGPI : équipe 2The invention of next generation sequencing techniques (NGS) marked the coming of a n...
BackgroundThe invention of the Genome Sequence 20 DNA Sequencing System (454 parallel sequencing pla...
Viruses can create complex genetic populations within a host, and deep sequencing technologies allow...
Sequence Independent Single Primer Amplification is one of the most widely used random amplification...
<p>Sequence Independent Single Primer Amplification is one of the most widely used random ampl...
Next generation sequencing (NGS)/deep sequencing has become an important tool in the study of viruse...
Background: Viruses are key players regulating microbial ecosystems. Exploration of viral assemblage...
ABSTRACT Validating the sampling depth and reducing sequencing errors are critical for studies of vi...
Massive, parallel sequencing is a potent tool for dissecting the regulation of biological processes ...
Background: Massive, parallel sequencing is a potent tool for dissecting the regulation of biologica...
Abstract: The ability to accurately characterize DNA variant proportions using PCR amplification is ...
Genetic analyses play a central role in infectious disease research. Massively parallelized “mechani...
Abstract Background In a high-throughput environment, to PCR amplify and sequence a large set of vir...
The development of modern and affordable sequencing technologies has allowed the study of viral popu...
Bias introduced by the simultaneous amplification of specific genes from complex mixtures of templat...
BGPI : équipe 2The invention of next generation sequencing techniques (NGS) marked the coming of a n...
BackgroundThe invention of the Genome Sequence 20 DNA Sequencing System (454 parallel sequencing pla...
Viruses can create complex genetic populations within a host, and deep sequencing technologies allow...