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Rabies virus nucleo- and glycoprotein coding sequences from dogs in Thailand (2022-2024).

Lerdchai Chintapitaksakul1, Kultyarat Bhakha1, Peerada Siriwatcharawong1

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|February 10, 2026
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Summary

Rabies virus in Thailand shows genetic diversity. Genomic surveillance using Oxford Nanopore sequencing identified Asian-SEA3 lineages, crucial for public health insights.

Keywords:
Thailandgenomic surveillanceglycoprotein genenucleoprotein generabies virus

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Area of Science:

  • Veterinary Virology
  • Genomic Epidemiology
  • Public Health Microbiology

Background:

  • Rabies poses a significant public health threat globally and in Thailand.
  • Understanding the genetic makeup of circulating rabies virus strains is essential for effective control strategies.

Purpose of the Study:

  • To genetically characterize rabies virus strains detected in Thailand between 2022 and 2024.
  • To assess the genetic diversity and phylogenetic relationships of these strains.

Main Methods:

  • Nucleoprotein (N) and glycoprotein (G) genes were amplified and sequenced from eight rabies-positive specimens.
  • Oxford Nanopore sequencing technology was employed for rapid, real-time genomic data generation.
  • Phylogenetic analyses were conducted to determine the evolutionary relationships of the sequenced viral isolates.

Main Results:

  • Sequencing successfully yielded genetic data for the N and G genes of the rabies virus isolates.
  • Phylogenetic analysis placed the Thai rabies virus strains within the Asian-SEA3 lineages.
  • Evidence of genetic diversity among the analyzed rabies virus strains was observed.

Conclusions:

  • The findings highlight the genetic diversity of rabies virus in Thailand.
  • Genomic surveillance, facilitated by advanced sequencing technologies, is vital for tracking viral evolution and informing public health interventions.
  • Continued genomic monitoring is recommended to manage rabies transmission effectively.