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SRX24189022: GSM8192582: spacer_desaulted_R3; Homo sapiens; Mus musculus; RNA-Seq
1 OXFORD_NANOPORE (MinION) run: 115,000 spots, 138.2M bases, 116.8Mb downloads

External Id: GSM8192582_r1
Submitted by: WIMM, University of Oxford
Study: Anchor-Enhanced Bead Design for Reduced Oligonucleotide Synthesis Errors in Single-cell sequencing
show Abstracthide Abstract
Single-cell transcriptomics, reliant on the incorporation of barcodes and unique molecular identifiers (UMIs) into captured polyA+ mRNA, faces a significant challenge due to synthesis errors in oligonucleotide capture sequences. These inaccuracies, which are especially problematic in long-read sequencing, impair the precise identification of sequences and result in inaccuracies in UMI deduplication. To mitigate this issue, we have modified the oligonucleotide capture design, which integrates an interposed anchor between the barcode and UMI, and a 'V' base anchor adjacent to the polyA capture region. This configuration is devised to ensure compatibility with both short and long-read sequencing technologies, facilitating improved UMI recovery and enhanced feature detection, thereby improving the efficacy of droplet-based sequencing methods. Overall design: In order to evaluate the accuracy of our spacer UMI assignment we captured mixed mouse and human cells (at ratio of 50:50) and then performed single-cell RNA sequencing.
Sample: spacer_desaulted_R3
SAMN40874306 • SRS20963070 • All experiments • All runs
Organism: Homo sapiens
Library:
Name: GSM8192582
Instrument: MinION
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC SINGLE CELL
Selection: cDNA
Layout: SINGLE
Construction protocol: Samples were processed using the Drop-seq DolomiteBio Nadia encapsulator system. scCOLOR-seq v2 protocol was used.
Runs: 1 run, 115,000 spots, 138.2M bases, 116.8Mb
Run# of Spots# of BasesSizePublished
SRR28589557115,000138.2M116.8Mb2024-04-09

ID:
32500024

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