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Robust and sensitive amplicon-based whole-genome sequencing assay of respiratory syncytial virus subtype A and B

Title: Robust and sensitive amplicon-based whole-genome sequencing assay of respiratory syncytial virus subtype A and B
Authors: Tiina Talts; Lucy G. Mosscrop; David Williams; John S. Tregoning; Whitney Paulo; Arinder Kohli; Thomas C. Williams; Katja Hoschler; Joanna Ellis; Simon de Lusignan; Maria Zambon
Source: Microbiology Spectrum, Vol 12, Iss 4 (2024)
Publisher Information: American Society for Microbiology
Publication Year: 2024
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: respiratory syncytial virus; whole-genome sequencing; next-generation sequencing; Microbiology; QR1-502
Description: Prevention of respiratory syncytial virus (RSV) infection is now a global health priority, with a long-acting monoclonal antibody and two RSV vaccines recently licenced for clinical use. Most licenced and candidate interventions target the RSV fusion (RSV-F) protein. New interventions may be associated with the spread of mutations, reducing susceptibility to antibody neutralization in RSV-F. There is a need for ongoing longitudinal global surveillance of circulating RSV strains. To achieve this large-scale genomic surveillance, a reliable, high-throughput RSV sequencing assay is required. Here we report an improved high-throughput RSV whole-genome sequencing (WGS) assay performed directly on clinical samples without additional enrichment, using a 4-primer-pool, short-amplicon PCR-tiling approach that is suitable for short-read sequencing platforms. Using upper respiratory tract (URT) RSV-positive clinical samples obtained from a sentinel network of primary care providers and from hospital patients (29.7% and 70.2%, respectively; n = 1,037), collected over the period 2019 to 2023, this assay had a threshold of approximately 4 × 103 to 8 × 103 copies/mL (RSV-B and RSV-A sub-types, respectively) as the lowest amount of virus needed in the sample to achieve >96% of whole-genome coverage at a high-quality level. Using a Ct value of 31 as an empirical cut-off, the overall assay success rate of obtaining >90% genome coverage at a read depth minimum of 20 was 96.83% for clinical specimens successfully sequenced from a total of 1,071. The RSV WGS approach described in this study has increased sensitivity compared to previous approaches and can be applied to clinical specimens without the requirement for enrichment. The updated approach produces sequences of high quality consistently and cost-effectively, suitable for implementation to underpin national programs for the surveillance of RSV genomic variation.IMPORTANCEIn this paper, we report an improved high-throughput respiratory syncytial virus (RSV) ...
Document Type: article in journal/newspaper
Language: English
Relation: https://doaj.org/toc/2165-0497; https://doaj.org/article/b3898c91b7de4407be54ac9d4b238011
DOI: 10.1128/spectrum.03067-23
Availability: https://doi.org/10.1128/spectrum.03067-23; https://doaj.org/article/b3898c91b7de4407be54ac9d4b238011
Accession Number: edsbas.B16C7CF
Database: BASE