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SRX11368474: Nanopore WGS of NA12878 - alignments
1 OXFORD_NANOPORE (PromethION) run: 9.1M spots, 93.4G bases, 67Gb downloads

Design: Unsheared DNA libraries were prepared using the ONT LSK109 ligation library prep and two flow cells were used to generate ~30X genome coverage. To obtain the BAM file, the reads were mapped to the hg38 reference genome (with no alternate contigs) using minimap2 version 2.17-r941 (with -x map-ont -a --secondary=no options) and sorted using samtools v1.9.
Submitted by: Garvan Institute of Medical Research
Study: SLOW5: a new file format enables massive acceleration of nanopore sequencing data analysis
show Abstracthide Abstract
Nanopore sequencing is an emerging genomic technology with great potential. However, the storage and analysis of nanopore sequencing data have become major bottlenecks preventing more widespread adoption in research and clinical genomics. Here, we elucidate an inherent limitation in the file format used to store raw nanopore data - known as FAST5 that prevents efficient analysis on high-performance computing (HPC) systems. To overcome this, we have developed SLOW5, an alternative file format that permits efficient parallelisation and, thereby, acceleration of nanopore data analysis. For example, we show that using SLOW5 format, instead of FAST5, reduces the time and cost of genome-wide DNA methylation profiling by an order of magnitude on common HPC systems, and delivers consistent improvements on a wide range of different architectures. With a simple, accessible file structure and around a 25% reduction in size compared to FAST5, SLOW5 format will deliver substantial benefits to all areas of the nanopore community.
Sample:
SAMN20087527 • SRS9414678 • All experiments • All runs
Organism: Homo sapiens
Library:
Name: NA12878_ONT_bam
Instrument: PromethION
Strategy: WGS
Source: GENOMIC
Selection: other
Layout: SINGLE
Runs: 1 run, 9.1M spots, 93.4G bases, 67Gb
Run# of Spots# of BasesSizePublished
SRR150581659,083,05293.4G67Gb2021-07-07

ID:
15188790

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