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March 29, 2026Infection Genetics and Evolution2 citationsOpen Access

Molecular epidemiological and genetic characteristics of coxsackievirus A6 circulating in mainland China from 1992 to 2023

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ZYZhanyang YuYSYingying ShiTZTingting Zhang

Key Result

Coxsackievirus A6 in mainland China exhibits high genetic diversity, comprising ten evolutionary lineages that include the first detection of genotype A and two novel lineages.

Key Points

  • This study aims to analyze the molecular epidemiology and genetic traits of coxsackievirus A6 in mainland China over three decades.
  • Conducted phylogenetic analysis based on VP1 and P3 sequences of CVA6 samples from 1992 to 2023.
  • Identified existing and new lineages through recombination analysis.
  • Examined amino acid variations related to pathogenicity among lineages.
  • Identified genotype A strains for the first time in mainland China.
  • Discovered two new lineages, RF-K2.1 and RF-Z, in the CVA6 population.
  • Demonstrated high genetic diversity in CVA6 due to various recombination patterns.

Structured PICO

P
Population
Coxsackievirus A6 (CVA6) strains circulating in mainland China from 1992 to 2023
O
Outcome
Molecular epidemiology and genetic characteristics (phylogenetic analysis, recombination analysis, amino acid variations)

The study maps the longitudinal molecular epidemiology and evolutionary characteristics of CVA6 in mainland China, identifying new lineages and recombination patterns to inform surveillance and vaccine development.

Abstract

Hand, foot, and mouth disease (HFMD) is a common global infectious disease in children. Coxsackievirus A6 (CVA6) has emerged as the most important pathogen of HFMD. Molecular epidemiological and evolutionary surveillance of CVA6 is vital for the prevention and control of HFMD outbreaks. This study comprehensively analyzed the molecular epidemiology and genetic characteristics of CVA6 circulating in mainland China during 1992–2023. Phylogenetic analysis based on VP1 sequences revealed that in addition to the previously reported subgenotypes B1, B2, C1, D2, D3a, and D3b, genotype A was first identified in mainland China. Phylogenetic analysis based on the P3 region identified ten evolutionary lineages (defined as recombination forms, RFs) in mainland China, including previously reported lineages (RF-I, -C, -D, -K1, −A, −J, −L, and -K2) and two new lineages, RF-K2.1 and RF-Z. Recombination analysis revealed that RF-C and RF-A acted as the major parents and generated 2 derived lineages (-D and -K1) and 6 derived lineages (−J, −L, K2, K2.1 and -Z), respectively, by recombination with other enteroviruses in nonstructural regions. Furthermore, amino acid variations in 3D proteins were predicted across CVA6 lineages. Polymorphism in 3D might partially account for differences in pathogenicity among CVA6 lineages within the same subgenotypes. The residues at the site 3D-259 may be associated with the high-frequency recombination of CVA6. The findings reveal the longitudinal molecular epidemiological and evolutionary characteristics of CVA6 in mainland China, providing critical insights for the continuous monitoring of CVA6-associated HFMD and the development of antiviral drugs and vaccines. • Genotype A strains (form lineage RF-I) were first identified in mainland China. • Two new lineages RF-K2.1 and -Z were identified in mainland China. • CVA6 exhibits high genetic diversity due to multiple recombination patterns. • Amino acid residues at 3D-259 may relate with high-frequency recombination of CVA6.

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Cite This Study

Yu et al. (2026) studied this question. Coxsackievirus A6 in mainland China exhibits high genetic diversity, comprising ten evolutionary lineages that include the first detection of genotype A and two novel lineages.

synapsesocial.com/papers/69c8c277de0f0f753b39cb83https://doi.org/10.1016/j.meegid.2026.105928
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