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An Amplicon-Based Approach for the Whole-Genome Sequencing of Human Metapneumovirus
Rachel L Tulloch1,2, Jen Kok3, Ian Carter3
1Centre for Virus Research, Westmead Institute for Medical Research, Westmead, NSW 2145, Australia.
Abstract:
Human metapneumovirus (HMPV) is an important cause of upper and lower respiratory tract disease in individuals of all ages. It is estimated that most individuals will be infected by HMPV by the age of five years old. Despite this burden of disease, there remain caveats in our knowledge of global genetic diversity due to a lack of HMPV sequencing, particularly at the whole-genome scale. The purpose of this study was to create a simple and robust approach for HMPV whole-genome sequencing to be used for genomic epidemiological studies. To design our assay, all available HMPV full-length genome sequences were downloaded from the National Center for Biotechnology Information (NCBI) GenBank database and used to design four primer sets to amplify long, overlapping amplicons spanning the viral genome and, importantly, specific to all known HMPV subtypes. These amplicons were then pooled and sequenced on an Illumina iSeq 100 (Illumina, San Diego, CA, USA); however, the approach is suitable to other common sequencing platforms. We demonstrate the utility of this method using a representative subset of clinical samples and examine these sequences using a phylogenetic approach. Here we present an amplicon-based method for the whole-genome sequencing of HMPV from clinical extracts that can be used to better inform genomic studies of HMPV epidemiology and evolution.
Insights
A new whole-genome sequencing method for human metapneumovirus (HMPV) enables better understanding of its genetic diversity. This amplicon-based approach aids genomic epidemiology studies of HMPV, a common respiratory virus.
Area of Science:
- Virology
- Genomics
- Epidemiology
Background:
- Human metapneumovirus (HMPV) causes significant respiratory illness across all age groups.
- Most individuals are infected by HMPV by age five.
- Limited whole-genome sequencing data hinders understanding of global HMPV genetic diversity.
Purpose of the Study:
- To develop a simple, robust method for HMPV whole-genome sequencing.
- To facilitate genomic epidemiological studies of HMPV.
Main Methods:
- Designed four primer sets targeting all known HMPV subtypes based on NCBI GenBank sequences.
- Amplified overlapping long amplicons covering the entire viral genome.
- Sequenced pooled amplicons using Illumina iSeq 100, adaptable to other platforms.
Main Results:
- Successfully developed and demonstrated an amplicon-based whole-genome sequencing assay for HMPV.
- Applied the method to clinical samples, generating sequences for phylogenetic analysis.
- The assay is specific to all known HMPV subtypes.
Conclusions:
- Presents a novel amplicon-based method for HMPV whole-genome sequencing from clinical samples.
- This method enhances genomic studies of HMPV epidemiology and evolution.
- Facilitates comprehensive analysis of HMPV genetic diversity.

