Bacterial genome sequencing has developed rapidly in the last decade and has become a primary method for analyzing the genomic basis of differences in phenotype between strains as well as being a valuable tool for public health epidemiology. This chapter provides a comprehensive workflow for bacterial genome sequencing from experimental design to data suitable for comparative genomics analysis, while mainly focusing on the challenges associated with genome assembly. This approach was successfully applied to 19 Pseudomonas aeruginosa genomes from phenotypically distinct strains
Background De novo genome sequencing of previously uncharacterized microorganisms has the potential...
Pseudomonas has the highest number of species out of any genus of Gram-negative bacteria and is phyl...
The International Pseudomonas aeruginosa Consortium is sequencing over 1000 genomes and building an ...
Whole genome sequencing has become a powerful tool in modern microbiology. Especially bacterial geno...
The International Pseudomonas aeruginosa Consortium is sequencing over 1000 genomes and building an ...
genome sequences have been determined. DNA sequencing technology has dramatically improved from the ...
Next-generation genomic technology has both greatly accelerated the pace of genome research as well ...
The Pseudomonas aeruginosa genome can change to adapt to different ecological niches. We compared fo...
We present the scaffolded genome assembly of Pseudomonas aeruginosa Boston 41501, now publicly avail...
Pseudomonas is a highly versatile genus containing species that can be harmful to humans and plants ...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
The availability of complete genome sequences is a revolution in the study of microorganisms. A full...
The capability and speed in generating genomic data have increased profoundly since the release of t...
The metabolically versatile Gram-negative bacterium Pseudomonas aeruginosa inhabits terrestrial, aqu...
1<p>These Whole Genome Shotgun projects have been deposited at DDBJ/EMBL/GenBank under the accession...
Background De novo genome sequencing of previously uncharacterized microorganisms has the potential...
Pseudomonas has the highest number of species out of any genus of Gram-negative bacteria and is phyl...
The International Pseudomonas aeruginosa Consortium is sequencing over 1000 genomes and building an ...
Whole genome sequencing has become a powerful tool in modern microbiology. Especially bacterial geno...
The International Pseudomonas aeruginosa Consortium is sequencing over 1000 genomes and building an ...
genome sequences have been determined. DNA sequencing technology has dramatically improved from the ...
Next-generation genomic technology has both greatly accelerated the pace of genome research as well ...
The Pseudomonas aeruginosa genome can change to adapt to different ecological niches. We compared fo...
We present the scaffolded genome assembly of Pseudomonas aeruginosa Boston 41501, now publicly avail...
Pseudomonas is a highly versatile genus containing species that can be harmful to humans and plants ...
Novel high-throughput DNA sequencing technologies allow researchers to characterize a bacterial geno...
The availability of complete genome sequences is a revolution in the study of microorganisms. A full...
The capability and speed in generating genomic data have increased profoundly since the release of t...
The metabolically versatile Gram-negative bacterium Pseudomonas aeruginosa inhabits terrestrial, aqu...
1<p>These Whole Genome Shotgun projects have been deposited at DDBJ/EMBL/GenBank under the accession...
Background De novo genome sequencing of previously uncharacterized microorganisms has the potential...
Pseudomonas has the highest number of species out of any genus of Gram-negative bacteria and is phyl...
The International Pseudomonas aeruginosa Consortium is sequencing over 1000 genomes and building an ...