The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo genome sequencing and assembly using only nanopore data remain challenging. Here we describe PoreSeq, an algorithm that identifies and corrects errors in nanopore sequencing data and improves the accuracy of de novo genome assembly with increasing coverage depth. The approach relies on modeling the possible sources of uncertainty that occur as DNA transits through the nanopore and finds the sequence that best explains multiple reads of the same region. PoreSeq increases nanopore sequencing read accuracy of M13 bacteriophage DNA from 85% to 99% at 100× coverage. We also use the algorithm to assemble Escherichia coli with 30× coverage and the ...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
Introduction: Whole-genome sequencing using nanopore technologies can uncover structural variants, w...
International audienceOxford Nanopore Technologies' (ONT) long read sequencers offer access to longe...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
The field of nanopore research has been driven by the need to inexpensively and rapidly sequence DNA...
Abstract Nanopore sequencing is a rapidly maturing technology delivering long reads in real time on ...
Nanopore sequencing (ONT) is a new and rapidly developing method for determining nucleotide sequence...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Improved DNA sequencing methods have transformed the field of genomics over the last decade. This ha...
Technology guides the practice of scientific inquiry. In the biological sciences, DNA sequencing has...
Monitoring the progress of DNA molecules through a membrane pore has been postulated as a method for...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
High quality reference genome sequences are the core of modern genomics. Oxford Nanopore Technologie...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
Introduction: Whole-genome sequencing using nanopore technologies can uncover structural variants, w...
International audienceOxford Nanopore Technologies' (ONT) long read sequencers offer access to longe...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
The field of nanopore research has been driven by the need to inexpensively and rapidly sequence DNA...
Abstract Nanopore sequencing is a rapidly maturing technology delivering long reads in real time on ...
Nanopore sequencing (ONT) is a new and rapidly developing method for determining nucleotide sequence...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Thesis (Ph.D.)--University of Washington, 2018DNA contains the code of life, forming the molecular b...
Improved DNA sequencing methods have transformed the field of genomics over the last decade. This ha...
Technology guides the practice of scientific inquiry. In the biological sciences, DNA sequencing has...
Monitoring the progress of DNA molecules through a membrane pore has been postulated as a method for...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
High quality reference genome sequences are the core of modern genomics. Oxford Nanopore Technologie...
Abstract Metagenomic sequencing has allowed for the recovery of previously unexplored microbial geno...
Introduction: Whole-genome sequencing using nanopore technologies can uncover structural variants, w...
International audienceOxford Nanopore Technologies' (ONT) long read sequencers offer access to longe...