How low can you go? Driving down the DNA input requirements for nanopore sequencing
Heavens, D.; Chooneea, D.; Giolai, M.; Cuber, P.; Aanstad, P.; Martin, S.; Alston, M.; Misra, R.; Clark, M. D.; Leggett, R. M.
Show abstract
The requirement for large amounts of purified DNA limits many sequencing experiments, especially when seeking to avoid pre-amplification or when using third generation technology to sequence molecules directly. We wanted to test the limits of current nanopore sequencing input requirements and devised a set of experiments to evaluate extraction and library preparation approaches for low inputs. We found an optimised bead beating approach combined with a magnetic bead protocol, rather than traditional spin columns for DNA extraction, improved both molecule length, integrity score and DNA yield. Through reducing the DNA input to as little as 6.25 % of recommended (25 ng versus 400 ng) and reaction volumes in half, library construction can be completed, and sequencing begun within 20 minutes of sample collection. Applying these approaches, we demonstrated that our pipeline can be used as a cheap and effective method to de novo assemble a genome and identify genes from low quantities and quality of DNA. With our rapid extraction protocol using transportable equipment and low input library construction we were able to generate a de novo assembly from a single insect (Drosophila melanogaster) spanning 125 Mbp / 85 % of the reference genome, over 96.9% complete BUSCO genes, with a contig N50 over 1.2 Mbp, including chromosome arm sized contigs, for a modest consumable cost under {pound}600.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Flexible, Production-Scale, Human Whole Genome Sequencing On A Benchtop Sequencer 94%
- High quality single amplicon sequencing method for illumina platforms using N (0-10) spacer primer pool without PhiX spik-in 94%
- MicroPIPE: An end-to-end solution for high-quality complete bacterial genome construction 94%
Similar papers in this journal
- Nanopore Adaptive Sampling Enriches for Antimicrobial Resistance Genes in Microbial Communities 94%
- NucBalancer: Streamlining Barcode Sequence Selection for Optimal Sample Pooling for Sequencing 93%
- Optimizing experimental design for genome sequencing and assembly with Oxford Nanopore Technologies 93%
Similar papers in this journal
- centriflaken: an automated data analysis pipeline for assembly and in silico analyses of foodborne pathogens from metagenomic samples 94%
- MinION Sequencing of colorectal cancer tumour microbiomes - a comparison with amplicon-based and RNA-Sequencing 93%
- High-throughput DNA extraction and cost-effective miniaturized metagenome and amplicon library preparation of soil samples for DNA sequencing 93%
Similar papers in this journal
- NAD: Noise-augmented direct sequencing of target nucleic acids by augmenting with noise and selective sampling 95%
- Automated phenol-chloroform extraction of high molecular weight genomic DNA for use in long-read single-molecule sequencing. 94%
- Nanopore long reads enable the first complete genome assembly of a Malaysian Vibrio parahaemolyticus isolate bearing the pVa plasmid associated with acute hepatopancreatic necrosis disease 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.