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病毒分离可对 2020 年在巴西南部流行的具有独特突变(S:H655Y 和 T63N)的 SARS-CoV-2 谱系 B1.1.33 的早期样本进行特征描述。

Viral isolation allows characterization of early samples of SARS-CoV-2 lineage B1.1.33 with unique mutations (S: H655Y and T63N) circulating in Southern Brazil in 2020.

机构信息

Laboratório de Microbiologia Molecular, Universidade Feevale, Rodovia ERS-239, nº 2755, Vila Nova, Novo Hamburgo, RS, CEP 93525-075, Brazil.

Centro de Pesquisas Em Biologia Molecular E Funcional (CPBMF), Pontifícia Universidade Católica Do Rio Grande Do Sul (PUCRS), Av. Ipiranga, 6681, Porto Alegre, RS, CEP 90619900, Brazil.

出版信息

Braz J Microbiol. 2022 Sep;53(3):1313-1319. doi: 10.1007/s42770-022-00789-z. Epub 2022 Jul 1.

Abstract

Different approaches are in use to improve our knowledge about the causative agent of coronavirus disease (COVID-19). Cell culture-based methods are the better way to perform viral isolation, evaluate viral infectivity, and amplify the virus. Furthermore, next-generation sequencing (NGS) have been essential to analyze a complete genome and to describe new viral species and lineages that have arisen over time. Four naso-oropharyngeal swab samples, collected from April to July of 2020, were isolated and sequenced aiming to produce viral stocks and analyze the mutational profile of the found lineage. B.1.1.33 was the lineage detected in all sequences. Although the samples belong to the same lineage, it was possible to evaluate different mutations found including some that were first described in these sequences, like the S:H655Y and T63N. The results described here can help to elicit how the pandemic started to spread and how it has been evolving in south Brazil.

摘要

不同的方法被用于增进我们对导致冠状病毒病(COVID-19)的病原体的了解。基于细胞培养的方法是进行病毒分离、评估病毒感染力和扩增病毒的更好方法。此外,下一代测序(NGS)对于分析完整基因组以及描述随着时间的推移而出现的新型病毒物种和谱系至关重要。从 2020 年 4 月到 7 月,采集了 4 个鼻咽拭子样本,进行了分离和测序,旨在产生病毒株并分析所发现谱系的突变特征。在所有序列中都检测到了 B.1.1.33 谱系。尽管这些样本属于同一谱系,但可以评估发现的不同突变,包括一些在这些序列中首次描述的突变,如 S:H655Y 和 T63N。这里描述的结果可以帮助阐明大流行是如何开始传播的,以及它在巴西南部是如何演变的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9eff/9433555/97e4980bfcc3/42770_2022_789_Fig1_HTML.jpg

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