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A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S  rRNA gene sequencing to characterize building-dust microbiomes | Scientific  Reports
A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S rRNA gene sequencing to characterize building-dust microbiomes | Scientific Reports

A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S  rRNA gene sequencing to characterize building-dust microbiomes | Scientific  Reports
A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S rRNA gene sequencing to characterize building-dust microbiomes | Scientific Reports

Pathogens | Free Full-Text | Nanopore-Based Surveillance of Zoonotic  Bacterial Pathogens in Farm-Dwelling Peridomestic Rodents
Pathogens | Free Full-Text | Nanopore-Based Surveillance of Zoonotic Bacterial Pathogens in Farm-Dwelling Peridomestic Rodents

16S sequencing and analysis
16S sequencing and analysis

Computational methods for 16S metabarcoding studies using Nanopore  sequencing data - ScienceDirect
Computational methods for 16S metabarcoding studies using Nanopore sequencing data - ScienceDirect

Full-length 16S rRNA gene amplicon analysis of human gut microbiota using  MinION™ nanopore sequencing confers species-level resolution | BMC  Microbiology | Full Text
Full-length 16S rRNA gene amplicon analysis of human gut microbiota using MinION™ nanopore sequencing confers species-level resolution | BMC Microbiology | Full Text

Full-length #16S rRNA #nanopore sequencing of dog #skin microbiota –  microBEnet: the microbiology of the Built Environment network
Full-length #16S rRNA #nanopore sequencing of dog #skin microbiota – microBEnet: the microbiology of the Built Environment network

16S sequencing and analysis
16S sequencing and analysis

Freshwater monitoring by nanopore sequencing | eLife
Freshwater monitoring by nanopore sequencing | eLife

De novo species identification using 16S rRNA gene nanopore sequencing  [PeerJ]
De novo species identification using 16S rRNA gene nanopore sequencing [PeerJ]

Analysis of the mouse gut microbiome using full-length 16S rRNA amplicon  sequencing | Scientific Reports
Analysis of the mouse gut microbiome using full-length 16S rRNA amplicon sequencing | Scientific Reports

16S rRNA gene sequence analysis using the MinION™ nanopore sequencer. a...  | Download Scientific Diagram
16S rRNA gene sequence analysis using the MinION™ nanopore sequencer. a... | Download Scientific Diagram

Frontiers | Direct Metatranscriptome RNA-seq and Multiplex RT-PCR Amplicon  Sequencing on Nanopore MinION – Promising Strategies for Multiplex  Identification of Viable Pathogens in Food
Frontiers | Direct Metatranscriptome RNA-seq and Multiplex RT-PCR Amplicon Sequencing on Nanopore MinION – Promising Strategies for Multiplex Identification of Viable Pathogens in Food

PDF] A method for high precision sequencing of near full-length 16S rRNA  genes on an Illumina MiSeq | Semantic Scholar
PDF] A method for high precision sequencing of near full-length 16S rRNA genes on an Illumina MiSeq | Semantic Scholar

Heatmap of the 15 most abundant species identified by mapping 16S rRNA... |  Download Scientific Diagram
Heatmap of the 15 most abundant species identified by mapping 16S rRNA... | Download Scientific Diagram

A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S  rRNA gene sequencing to characterize building-dust microbiomes | Scientific  Reports
A preliminary study on the potential of Nanopore MinION and Illumina MiSeq 16S rRNA gene sequencing to characterize building-dust microbiomes | Scientific Reports

Full-length 16S rRNA gene amplicon analysis of human gut microbiota using  MinION™ nanopore sequencing confers species-level resolution | BMC  Microbiology | Full Text
Full-length 16S rRNA gene amplicon analysis of human gut microbiota using MinION™ nanopore sequencing confers species-level resolution | BMC Microbiology | Full Text

Barcode of life: simple laboratory workflows for 16S and CO1 genus and  species identification
Barcode of life: simple laboratory workflows for 16S and CO1 genus and species identification

16S sequencing and analysis
16S sequencing and analysis

Full-length 16S rRNA gene amplicon analysis of human gut microbiota using  MinION™ nanopore sequencing confers species-level resolution | bioRxiv
Full-length 16S rRNA gene amplicon analysis of human gut microbiota using MinION™ nanopore sequencing confers species-level resolution | bioRxiv

Evaluation of full-length nanopore 16S sequencing for detection of  pathogens in microbial keratitis [PeerJ]
Evaluation of full-length nanopore 16S sequencing for detection of pathogens in microbial keratitis [PeerJ]

16S rRNA Sequencing Using the Oxford Nanopore Minion – microBEnet: the  microbiology of the Built Environment network
16S rRNA Sequencing Using the Oxford Nanopore Minion – microBEnet: the microbiology of the Built Environment network

The effect of taxonomic classification by full-length 16S rRNA sequencing  with a synthetic long-read technology | Scientific Reports
The effect of taxonomic classification by full-length 16S rRNA sequencing with a synthetic long-read technology | Scientific Reports

Microorganisms | Free Full-Text | Nanopore Is Preferable over Illumina for  16S Amplicon Sequencing of the Gut Microbiota When Species-Level Taxonomic  Classification, Accurate Estimation of Richness, or Focus on Rare Taxa Is
Microorganisms | Free Full-Text | Nanopore Is Preferable over Illumina for 16S Amplicon Sequencing of the Gut Microbiota When Species-Level Taxonomic Classification, Accurate Estimation of Richness, or Focus on Rare Taxa Is