Whole genome sequencing of bacteria has become daily routine in many fields. Advances in DNA sequencing technologies and continuously dropping costs have resulted in a tremendous increase in the amounts of available sequence data. However, comprehensive in-depth analysis of the resulting data remains an arduous and time-consuming task. In order to keep pace with these promising but challenging developments and to transform raw data into valuable information, standardized analyses and scalable software tools are needed. Here, we introduce ASA3P, a fully automatic, locally executable and scalable assembly, annotation and analysis pipeline for bacterial genomes. The pipeline automatically executes necessary data processing steps, i.e. quality ...
The use of whole-genome sequencing (WGS) for bacterial characterisation has increased substantially ...
<div><p>BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a n...
AbstractThe recent advances in sequencing technologies have given all microbiology laboratories acce...
ASA³P is an automatic and highly scalable assembly, annotation and higher-level analyses pipeline fo...
Helicobacter pylori is a bacterium related to a variety of diseases and is a major risk factor for g...
Background De novo genome sequencing of previously uncharacterized microorganisms has the potential...
The technological advances have led to faster and more cost-effective sequencing platforms, making i...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
Every day, millions of nucleotides are being sequenced by high throughput, next-generation sequencin...
BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a new appro...
High throughput sequencing is now fast and cheap enough to be considered part of the toolbox for inv...
Translating the Oxford Nanopore MinION sequencing technology into medical microbiology requires on-g...
Whole genome sequencing has become a powerful tool in modern microbiology. Especially bacterial geno...
Whole genome sequencing (WGS) of bacteria has become a routine method in diagnostic laboratories. On...
BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a new appro...
The use of whole-genome sequencing (WGS) for bacterial characterisation has increased substantially ...
<div><p>BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a n...
AbstractThe recent advances in sequencing technologies have given all microbiology laboratories acce...
ASA³P is an automatic and highly scalable assembly, annotation and higher-level analyses pipeline fo...
Helicobacter pylori is a bacterium related to a variety of diseases and is a major risk factor for g...
Background De novo genome sequencing of previously uncharacterized microorganisms has the potential...
The technological advances have led to faster and more cost-effective sequencing platforms, making i...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
Every day, millions of nucleotides are being sequenced by high throughput, next-generation sequencin...
BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a new appro...
High throughput sequencing is now fast and cheap enough to be considered part of the toolbox for inv...
Translating the Oxford Nanopore MinION sequencing technology into medical microbiology requires on-g...
Whole genome sequencing has become a powerful tool in modern microbiology. Especially bacterial geno...
Whole genome sequencing (WGS) of bacteria has become a routine method in diagnostic laboratories. On...
BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a new appro...
The use of whole-genome sequencing (WGS) for bacterial characterisation has increased substantially ...
<div><p>BG7 is a new system for de novo bacterial, archaeal and viral genome annotation based on a n...
AbstractThe recent advances in sequencing technologies have given all microbiology laboratories acce...