Oxford Nanopore sequencing can be used to achieve complete bacterial genomes. However, the error rates of Oxford Nanopore long reads are greater compared to Illumina short reads. Long-read assemblers using a variety of assembly algorithms have been developed to overcome this deficiency, which have not been benchmarked for genomic analyses of bacterial pathogens using Oxford Nanopore long reads. In this study, long-read assemblers, namely Canu, Flye, Miniasm/Racon, Raven, Redbean, and Shasta, were thus benchmarked using Oxford Nanopore long reads of bacterial pathogens. Ten species were tested for mediocre- and low-quality simulated reads, and 10 species were tested for real reads. Raven was the most robust assembler, obtaining complete and ...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
Translating the Oxford Nanopore MinION sequencing technology into medical microbiology requires on-g...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Abstract Background Short-read sequencing technologies have made microbial genome sequencing cheap a...
Illumina sequencing allows rapid, cheap and accurate whole genome bacterial analyses, but short read...
Illumina sequencing allows rapid, cheap and accurate whole genome bacterial analyses, but short read...
(1) Background: Short-read sequencing allows for the rapid and accurate analysis of the whole bacter...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
Complete, accurate, cost-effective, and high-throughput reconstruction of bacterial genomes for larg...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
Background: Data sets from long-read sequencing platforms (Oxford Nanopore Technologies and Pacific ...
Long-read sequencing (LRS) can resolve repetitive regions, a limitation of short read (SR) data. Red...
Long-read sequencing (LRS), like Oxford Nanopore Technologies, is usually associated with higher err...
Long-read sequencing (LRS), like Oxford Nanopore Technologies, is usually associated with higher err...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
Translating the Oxford Nanopore MinION sequencing technology into medical microbiology requires on-g...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...
Abstract Background Short-read sequencing technologies have made microbial genome sequencing cheap a...
Illumina sequencing allows rapid, cheap and accurate whole genome bacterial analyses, but short read...
Illumina sequencing allows rapid, cheap and accurate whole genome bacterial analyses, but short read...
(1) Background: Short-read sequencing allows for the rapid and accurate analysis of the whole bacter...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
Complete, accurate, cost-effective, and high-throughput reconstruction of bacterial genomes for larg...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
Background: Data sets from long-read sequencing platforms (Oxford Nanopore Technologies and Pacific ...
Long-read sequencing (LRS) can resolve repetitive regions, a limitation of short read (SR) data. Red...
Long-read sequencing (LRS), like Oxford Nanopore Technologies, is usually associated with higher err...
Long-read sequencing (LRS), like Oxford Nanopore Technologies, is usually associated with higher err...
BackgroundEmerging long reads sequencing technology has greatly changed the landscape of whole-genom...
Translating the Oxford Nanopore MinION sequencing technology into medical microbiology requires on-g...
Sequencing technologies have evolved dramatically since the first two bacterial genomes were publish...