Dynamic Zero-Covid strategy curtails mutagenesis and emergence of new variants of the SARS-CoV-2

Lunbiao Cui,Liguo Zhu, Jun Zhang,Huafeng Fan, Yongxiang Yi,Jun Zhao,Yiyue Ge,Shenjiao Wang, Xu Han, Xingsu Gao,Xian Qi,Jianguang Fu, Zhifeng Li,Huan Fan,Huiyan Yu,Fei Deng,Kangchen Zhao,Xiaojuan Zhu,Jianli Hu, Jianjun Li,Jing Ai, Guodong Kang, Ya Shen, Guangjie Jin, Furu Wang, Zhong Zhang, Min He, Songning Ding,Yin Wang, Yuying Dong, Yao Huang,Changhua Yi, Longyu Wang, Yudong Jiao, Jinfu Wang, Jian Li,Hongde Liu,Jingxin Li,Changjun Bao, Ming Wu,Fengcai Zhu

semanticscholar(2021)

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摘要
Within the local outbreak period of SARS-CoV-2 Delta variant in Nanjing and Yangzhou, China, we analyzed the mutation process of the Delta variants in 520 cases, as well as the production, spread and elimination of new mutant strains under the non-pharmaceutical interventions (NPI) strategy. The investigation on distribution of COVID-19 cases and phylogenetic analysis of SARS-CoV-2 genome sequences attributed to tracking the transmission chains, transmission chains were terminated by the isolation of the COVID-19 patients and quarantine of close-contracts, suggesting the importance of NPI in prompting some mutations to disappear and stopping the transmission of new variants. Dynamic zero-Covid strategy has been implemented successfully to against the second-largest local epidemic caused by an imported COVID-19 case in China.
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mutagenesis,zero-covid,sars-cov
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