Monitoring the progress of DNA molecules through a membrane pore has been postulated as a method for sequencing DNA for several decades. Recently, a nanopore-based sequencing instrument, the Oxford Nanopore MinION, has become available, and we used this for sequencing the Saccharomyces cerevisiae genome. To make use of these data, we developed a novel open-source hybrid error correction algorithm Nanocorr specifically for Oxford Nanopore reads, because existing packages were incapable of assembling the long read lengths (5-50 kbp) at such high error rates (between approximately 5% and 40% error). With this new method, we were able to perform a hybrid error correction of the nanopore reads using complementary MiSeq data and produce a de novo...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Improved DNA sequencing methods have transformed the field of genomics over the last decade. This ha...
© 2018 Nature Publishing Group. All rights reserved. We report the sequencing and assembly of a refe...
Background: The introduction of the MinION sequencing device by Oxford Nanopore Technologies may gre...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Motivation: Recent emergence of nanopore sequencing technology set a challenge for established assem...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
An organism\u27s genome is the ultimate determinant of its functional potential. Understanding genom...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Single-molecule sequencing instruments can generate multikilobase sequences with the potential to gr...
High quality reference genome sequences are the core of modern genomics. Oxford Nanopore Technologie...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...
Improved DNA sequencing methods have transformed the field of genomics over the last decade. This ha...
© 2018 Nature Publishing Group. All rights reserved. We report the sequencing and assembly of a refe...
Background: The introduction of the MinION sequencing device by Oxford Nanopore Technologies may gre...
AbstractThe revolution of genome sequencing is continuing after the successful second-generation seq...
Motivation: Recent emergence of nanopore sequencing technology set a challenge for established assem...
The single-molecule accuracy of nanopore sequencing has been an area of rapid academic and commercia...
An organism\u27s genome is the ultimate determinant of its functional potential. Understanding genom...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
Single-molecule sequencing instruments can generate multikilobase sequences with the potential to gr...
High quality reference genome sequences are the core of modern genomics. Oxford Nanopore Technologie...
The haploid Saccharomyces cerevisiae strain CEN.PK113–7D is a popular model system for metabolic eng...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
The accuracy of sequencing single DNA molecules with nanopores is continually improving, but de novo...
International audienceBackground: Oxford Nanopore Technologies Ltd (Oxford, UK) have recently commer...
AbstractThe Oxford Nanopore Technologies (ONT) MinION is a new sequencing technology that potentiall...