CoronaHiT: High throughput sequencing of SARS-CoV-2 genomes
Baker, D. J.; Aydin, A.; Le-Viet, T.; Kay, G. L.; Rudder, S.; Martins, L. d. O.; Tedim, A. P.; Kolyva, A.; Diaz, M.; Alikhan, N.-F.; Meadows, L.; Bell, A.; Gutierrez, A. V.; Trotter, A. J.; Thomson, N. M.; Gilroy, R.; Griffith, L.; Adriaenssens, E. M.; Stanley, R.; Charles, I. G.; Elumogo, N.; Wain, J.; Prakash, R.; Meader, E.; Mather, A. E.; Webber, M. A.; Dervisevic, S.; Page, A. J.; O'Grady, J.
Show abstract
The COVID-19 pandemic has spread to almost every country in the world since it started in China in late 2019. Controlling the pandemic requires a multifaceted approach including whole genome sequencing to support public health interventions at local and national levels. One of the most widely used methods for sequencing is the ARTIC protocol, a tiling PCR approach followed by Oxford Nanopore sequencing (ONT) of up to 96 samples at a time. There is a need, however, for a flexible, platform agnostic, method that can provide multiple throughput options depending on changing requirements as the pandemic peaks and troughs. Here we present CoronaHiT, a method capable of multiplexing up to 96 small genomes on a single MinION flowcell or >384 genomes on Illumina NextSeq, using transposase mediated addition of adapters and PCR based addition of barcodes to ARTIC PCR products. We demonstrate the method by sequencing 95 and 59 SARS-CoV-2 genomes for routine and rapid outbreak response runs, respectively, on Nanopore and Illumina platforms and compare to the standard ARTIC LoCost nanopore method. Of the 154 samples sequenced using the three approaches, genomes with [≥] 90% coverage (GISAID criteria) were generated for 64.3% of samples for ARTIC LoCost, 71.4% for CoronaHiT-ONT, and 76.6% for CoronaHiT-Illumina and have almost identical clustering on a maximum likelihood tree. In conclusion, we demonstrate that CoronaHiT can multiplex up to 96 SARS-CoV-2 genomes per MinION flowcell and that Illumina sequencing can be performed on the same libraries, which will allow significantly higher throughput. CoronaHiT provides increased coverage for higher Ct samples, thereby increasing the number of high quality genomes that pass the GISAID QC threshold. This protocol will aid the rapid expansion of SARS-CoV-2 genome sequencing globally, to help control the pandemic.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- ARTIC RSV amplicon sequencing reveals global RSV genotype dynamics. 96%
- vsgseq2: an updated pipeline for analysis of the diversity and abundance of population-wide Trypanosoma brucei VSG expression 92%
- Reducing Supply Chain Dependencies for Viral Genomic Surveillance: Get by with a Little HELP from Commercial Enzymes already in your Lab Freezer 92%
Similar papers in this journal
- periscope: Sub-Genomic RNA Identification in SARS-CoV-2 Genomic Sequencing Data 96%
- Illumina But With Nanopore: Sequencing Illumina libraries at high accuracy on the ONT MinION using R2C2 94%
- Ultra-low input single tube linked-read library method enables short-read NGS systems to generate highly accurate and economical long-range sequencing information for de novo genome assembly and haplotype phasing 93%
Similar papers in this journal
- Tracking SARS-CoV-2 variants of concern in wastewater: an assessment of nine computational tools using simulated genomic data 95%
- Hackflex: low cost Illumina Nextera Flex sequencing library construction 94%
- Nanopore and Illumina Sequencing Reveal Different Viral Populations from Human Gut Samples 94%
Similar papers in this journal
Similar papers in this journal
"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.