Nature Communications (Dec 2023)

Phylogeny and molecular evolution of the first local monkeypox virus cluster in Guangdong Province, China

  • Jianhai Yu,
  • Xin Zhang,
  • Jiajun Liu,
  • Linlin Xiang,
  • Shen Huang,
  • Xiaoting Xie,
  • Ling Fang,
  • Yifan Lin,
  • Meng Zhang,
  • Linqing Wang,
  • Jianfeng He,
  • Bao Zhang,
  • Biao Di,
  • Bo Peng,
  • Jingtao Liang,
  • Chenguang Shen,
  • Wei Zhao,
  • Baisheng Li

DOI
https://doi.org/10.1038/s41467-023-44092-3
Journal volume & issue
Vol. 14, no. 1
pp. 1 – 8

Abstract

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Abstract The first local mpox outbreak in Guangdong Province, China occurred in June 2023. However, epidemiological data have failed to quickly identify the source and transmission of the outbreak. Here, phylogeny and molecular evolution of 10 monkeypox virus (MPXV) genome sequences from the Guangdong outbreak were characterized, revealing local silent transmissions that may have occurred in Guangdong whose mpox outbreaks suggested a molecular epidemiological correlation with Portugal and several regions of China during the same period. The lineage IIb C.1, which includes all 10 MPXV from Guangdong, shows consistent temporal continuity in both phylogenetic characteristics and unique molecular evolutionary mutation spectrum, reflected in the continuous increase of single nucleotide polymorphisms (SNPs) and shared mutations over time. Compared with the Japan MPXV, the Guangdong MPXV showed higher genomic nucleotide differences and separated 14 shared mutations from the B.1 lineage, comprising 6 non-synonymous mutations in genes linked to host regulation, virus infection, and virus life cycle. The unique mutation spectrum with temporal continuity in IIb C.1, related to apolipoprotein B mRNA-editing catalytic polypeptide-like 3, promotes rapid viral evolution and diversification. The findings contribute to understanding the ongoing mpox outbreak in China and offer insights for developing joint prevention and control strategies.