Molecular Epidemiology and Genetic Evolution of Echovirus 25

Author:

Wang Xiaoyi1,Cun Jianping2,Li Shikang3,Shi Yong4,Liu Yingying5,Wei Haiyan6,Zhang Yong7,Cong Ruyi7,Yang Tingting7,Wang Wenhui7,Xiao Jinbo7,Song Yang7,Yan Dongmei7,Yang Qian7,Sun Qiang7,Ji Tianjiao7

Affiliation:

1. Anhui University of Science and Technology

2. Yunnan Center for Disease Control and Prevention

3. Hunan Center for Disease Control and Prevention

4. Jiangxi Center for Disease Control and Prevention

5. Hebei Center for Disease Control and Prevention

6. Henan Center for Disease Control and Prevention

7. National Institute for Viral Disease Control and Prevention, Chinese Center for Disease Control and Prevention

Abstract

Abstract Echovirus 25 (E25), a member of the Enterovirus B (EV-B) family, can cause aseptic meningitis (AM), viral meningitis (VM), and acute flaccid paralysis (AFP). However, systematic studies on the molecular epidemiology of E25, especially those concerning its evolution and recombination, are lacking. In this study, 18 strains of E25, isolated from seven provinces of China between 2009 and 2018, were collected based on the Chinese hand, foot, and mouth disease (HFMD) surveillance network, and 95 sequences downloaded from GenBank were also screened. Based on the phylogenetic analysis of 113 full-length VP1 sequences worldwide, globally occurring E25 strains were classified into 9 genotypes (A-I), and genotype F was the dominant genotype in the Chinese mainland. The average nucleotide substitution rate of E25 was 6.08×10− 3 substitutions/site/year, and six important transmission routes were identified worldwide. Seventeen recombination patterns were determined, of which genotype F can be divided into 9 recombination patterns. A positive selector site was found in the capsid protein region of genotype F. Recombination analysis and pressure selection analysis for genotype F showed more multiple recombination patterns and evolution characteristics, which may be responsible for it being the dominant genotype in the Chinese mainland. This study provides a theoretical basis for the subsequent prevention and control of E25.

Publisher

Research Square Platform LLC

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