A Large-Scale Outbreak of Echovirus 30 in Gansu Province of China in 2015 and Its Phylodynamic Characterization

被引:15
作者
Chen, Jianhua [1 ]
Han, Zhenzhi [2 ,3 ]
Wu, Haizhuo [1 ]
Xu, Wenbo [2 ,3 ,4 ]
Yu, Deshan [1 ]
Zhang, Yong [2 ,3 ,4 ]
机构
[1] Gansu Ctr Dis Control & Prevent, Key Lab Infect Dis Gansu Prov, Lanzhou, Peoples R China
[2] Chinese Ctr Dis Control & Prevent, Natl Inst Viral Dis Control & Prevent, WHO WPRO Reg Polio Reference Lab, Beijing, Peoples R China
[3] Chinese Ctr Dis Control & Prevent, Natl Inst Viral Dis Control & Prevent, Natl Hlth Commiss Key Lab Biosafety, Beijing, Peoples R China
[4] Chinese Acad Sci, Ctr Biosafety Megasci, Wuhan, Peoples R China
关键词
echovirus 30 (E-30); phylogenetic analysis; molecular epidemiology; phylodynamics; encephalitis; ASEPTIC-MENINGITIS OUTBREAK; VACCINE-DERIVED POLIOVIRUS; MOUTH-DISEASE; MOLECULAR EPIDEMIOLOGY; HUMAN ENTEROVIRUSES; COXSACKIEVIRUS B3; SHANDONG PROVINCE; HAND; FOOT; PICORNAVIRUS;
D O I
10.3389/fmicb.2020.01137
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Background Echovirus 30 (E-30) has been investigated and reported worldwide and is closely associated with several infectious diseases, including encephalitis; myocarditis; and hand, foot, and mouth disease. Although many E-30 outbreaks associated with encephalitis have been reported around the world, it was not reported in northwest China until 2015. Methods The clinical samples, including the feces, serum, throat swabs, and cerebrospinal fluid, were collected for this study and were analyzed for diagnosis. E-30 was isolated and processed according to the standard procedures. The epidemiological and phylogenetic analysis were performed to indicate the characteristics of E-30 outbreaks and phylodynamics of E-30 in China. Results The E-30 outbreaks affected nine towns of Gansu Province in 2015, starting at a school of Nancha town and spreading to other towns within 1 month. The epidemiological features showed that children aged 6-15 years were more susceptible to E-30 infection. The genotypes B and C cocirculated in the world, whereas the latter dominated the circulation of E-30 in China. The genome sequences of this outbreak present 99.3-100% similarity among these strains, indicating a genetic-linked aggregate outbreak of E-30 in this study. Two larger genetic diversity expansions and three small fluctuations of E-30 were observed from 1987 to 2016 in China, which revealed the oscillating patterns of E-30 in China. In addition, the coastal provinces of China, such as Zhejiang, Fujian, and Shandong, were initially infected, followed by other parts of the country. The E-30 strains isolated from mainland of China may have originated from Taiwan of China in the last century. Conclusion The highly similar E-30 genomes in this outbreak showed an aggregate outbreak of E-30, with nine towns affected. Our results suggested that, although the genetic diversity of E-30 oscillates, the dominant lineages of E-30 in China has complex genetic transmission. The coastal provinces played an important role in E-30 spread, which implied further development of effective countermeasures. This study provides a further insight into the E-30 outbreak and transmission and illustrates the importance of valuable surveillance in the future.
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页数:12
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