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Genome sequence variation analysis of two SARS coronavirus isolates after passage in Vero cell culture

机译:两个SARS冠状病毒分离株在Vero细胞培养中传代后的基因组序列变异分析

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摘要

SARS coronavirus is an RNA virus whose replication is error-prone, which provides possibility for escape of host defenses, and even leads to evolution of new viral strains during the passage or the transmission. Lots of variations have been detected among different SARS-CoV strains. And a study on these variations is helpful for development of efficient vaccine. Moreover, the test of nucleic acid characterization and genetic stability of SARS-CoV is important in the research of inactivated vaccine. The whole genome sequences of two SARS coronavirus strains after passage in Vero cell culture were determined and were compared with those of early passages, respectively. Results showed that both SARS coronavirus strains have high genetic stability, although nearly 10 generations were passed. Four nucleotide variations were observed between the second passage and the 11th passage of Sinol strain for identification of SARS inactivated vaccine. Moreover, only one nucleotide was different between the third passage and the 10th passage of Sino3 strain for SARS inactivated vaccine. Therefore, this study suggested it was possible to develop inactivated vaccine against SARS-CoV in the future.
机译:SARS冠状病毒是一种RNA病毒,其复制容易出错,这为逃避宿主防御提供了可能性,甚至导致在传代或传播过程中进化出新的病毒株。在不同的SARS-CoV株之间已检测到许多变异。对这些变异的研究有助于开发有效的疫苗。此外,SARS-CoV的核酸表征和遗传稳定性测试对灭活疫苗的研究非常重要。确定在Vero细胞培养中传代后的两个SARS冠状病毒菌株的全基因组序列,并分别与早期传代的序列进行比较。结果表明,尽管经过了近十代的传承,这两种SARS冠状病毒菌株都具有很高的遗传稳定性。在Sinol菌株第二次传代至第11次传代之间观察到四个核苷酸变异,以鉴定SARS灭活疫苗。而且,用于SARS灭活疫苗的Sino3株的第三代和第十代之间只有一个核苷酸不同。因此,这项研究表明,将来有可能开发针对SARS-CoV的灭活疫苗。

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