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April 1, 2026Viruses2 citationsOpen Access

Rapid Sequence Identification of Foot-and-Mouth Disease Virus Utilizing FMDV-ONTAPS: The Oxford Nanopore Technologies Amplicon P1 Sequencing Protocol

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SYSean YeoKHKate HoleTCTaeyo Chestley

Key Result

The FMDV-ONTAPS protocol successfully identified FMDV serotypes from clinical samples with RT-qPCR Cq values ranging from 8 to 28.21, offering a sensitive alternative to DAS-ELISAs.

Key Points

  • The central aim is to develop a rapid sequencing method for accurate serotype identification of foot-and-mouth disease virus.
  • Developed the FMDV-ONTAPS protocol using Oxford Nanopore Technologies
  • Utilized reverse transcription-PCR to amplify the P1 region of the FMDV genome
  • Conducted sequencing of amplicons for genetic data acquisition from various specimen matrices
  • Evaluated the limit of detection of FMDV isolates using both sequencing and RT-qPCR methods
  • All seven serotypes of FMDV were successfully sequenced using the new protocol.
  • Successful serotype identification from various specimen types including milk and serum.
  • Limit of detection for sequencing was comparable to RT-qPCR, with Cq values ranging from 8 to 28.21.

Structured PICO

P
Population
FMDV isolates and clinical samples (milk, serum, oral and nasal swabs, tissue suspensions, vesicular fluid, and oral fluid) from experimentally infected animals
I
Intervention
FMDV-ONTAPS (Oxford Nanopore Technologies Amplicon P1 Sequencing protocol)
C
Comparator
RT-qPCR and DAS-ELISAs
O
Outcome
Successful sequencing and serotype identification

The FMDV-ONTAPS protocol offers a timely and sensitive alternative to DAS-ELISAs for identifying FMDV serotypes from various clinical samples.

Abstract

Diagnostic testing of foot-and-mouth disease virus (FMDV) currently utilizes reverse transcription quantitative PCR (RT-qPCR) to detect the presence of viral RNA and double antibody sandwich ELISAs (DAS-ELISAs) to determine viral serotype. Serotype identification is critical to support informed vaccine selection to combat outbreaks. While DAS-ELISAs are capable of serotype identification, the test suffers from low sensitivity and requires a viral isolate for successful detection. In this study, we developed FMDV-ONTAPS: an Oxford Nanopore Technologies Amplicon P1 Sequencing protocol involving reverse transcription-PCR to amplify P1 of the FMDV genome, and Nanopore sequencing of the amplicons to provide genetic data for serotype and subtype/topotype identification. FMDV isolates representing all seven serotypes were successfully sequenced with this method. Additionally, the protocol successfully provided serotype identification from a variety of specimen matrices obtained from experimentally infected animals that included milk, serum, oral and nasal swabs, tissue suspensions, vesicular fluid, and oral fluid. The limit of detection for FMDV cell culture isolates was comparable for both sequencing and RT-qPCR detection. RT-qPCR Cq values for clinical samples evaluated ranged from 8 to 28.21. Sequencing was successful for all samples except for a single tissue suspension sample (Cq of 28.21). Identification of FMDV serotype in clinical samples is critical for effective outbreak response, and Nanopore sequencing offers a timelier and more sensitive alternative to DAS-ELISAs.

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Cite This Study

Yeo et al. (2026) studied Foot-and-mouth disease virus (FMDV). FMDV-ONTAPS (Oxford Nanopore Technologies Amplicon P1 Sequencing protocol) vs. RT-qPCR and DAS-ELISAs was evaluated on Serotype and subtype/topotype identification. The FMDV-ONTAPS protocol successfully identified FMDV serotypes from clinical samples with RT-qPCR Cq values ranging from 8 to 28.21, offering a sensitive alternative to DAS-ELISAs.

synapsesocial.com/papers/69ccb79916edfba7beb89aeehttps://doi.org/10.3390/v18040418
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Universal amplification and sequencing of foot-and-mouth disease virus complete genomes using nanopore technology2025
  2. 2Evaluation of amplicon-based nanopore sequencing for foot-and-mouth disease viruses in clinical and environmental samples2026
  3. 3Direct RNA Sequencing of Foot-and-mouth Disease Virus Genome Using a Flongle on MinION2024 · 7 citations
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  5. 5Enhanced detection and serotyping of foot‐and‐mouth disease virus serotype O, A, and Asia1 using a novel multiplex real‐time RT‐PCR2022 · 13 citations