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At this point, the first (the “template”) strand is passed into the nanopore with speed determined by the motor protein. Once the HP adapter is reached, a protein (the “hairpin protein”) allows the complementary strand of the DNA to be passed through the nanopore in a similar manner....
Oxford Nanopore CEO Gordon Sanghera said:“We are excited to collaborate with Geneyx to develop an end-to-end analysis tool for the clinical reporting of nanopore sequencing data.” Under the collaboration, Geneyx’s data analysis capabilities will be combined with Oxford Nanopore’s human-variatio...
Oxford Nanopore Technologies, initially conceptualized in the laboratories of David Deamer, George Church, and Hagan Bayley during the 1980s [45,46], has undergone maturity through the optimization of nanopores and motor proteins, multiple times of sequencing, and the development of novel base-calling...
Oxford Nanopore (ONT) is a leading long-read technology which has been revolutionizing transcriptome analysis through its capacity to sequence the majority of transcripts from end-to-end. This has greatly increased our ability to study the diversity of transcription mechanisms such as transcription init...
Example read from Oxford Nanopore MinION R7 ChemistryNicholas, LomanJosh, Quick
Wiggle plot showing Oxford Nanopore signal data for a P. aeruginosa readNicholas Loman
Additional file 4 of Detection of active transposable elements in Arabidopsis thaliana using Oxford Nanopore Sequencing technologyDebladis, EmilieLlauro, ChristelCarpentier, MarieChristineMirouze, MariePanaud, Olivier
Additional file 2 of Detection of active transposable elements in Arabidopsis thaliana using Oxford Nanopore Sequencing technologyEmilie, DebladisChristel, LlauroMarieChristine, CarpentierMarie, MirouzeOlivier, Panaud
Share and Cite MDPI and ACS Style Pyatnitskiy, M.A.; Arzumanian, V.A.; Radko, S.P.; Ptitsyn, K.G.; Vakhrushev, I.V.; Poverennaya, E.V.; Ponomarenko, E.A. Oxford Nanopore MinION Direct RNA-Seq for Systems Biology.Biology2021,10, 1131. https://doi.org/10.3390/biology10111131...