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Betacoronavirus Genomes: How Genomic Information has been Used to Deal with Past Outbreaks and the COVID-19 Pandemic

机译:Betacoronavirus基因组:基因组信息如何用于应对过去的爆发和Covid-19流行病

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In the 21st century, three highly pathogenic betacoronaviruses have emerged, with an alarming rate of human morbidity and case fatality. Genomic information has been widely used to understand the pathogenesis, animal origin and mode of transmission of coronaviruses in the aftermath of the 2002–2003 severe acute respiratory syndrome (SARS) and 2012 Middle East respiratory syndrome (MERS) outbreaks. Furthermore, genome sequencing and bioinformatic analysis have had an unprecedented relevance in the battle against the 2019–2020 coronavirus disease 2019 (COVID-19) pandemic, the newest and most devastating outbreak caused by a coronavirus in the history of mankind. Here, we review how genomic information has been used to tackle outbreaks caused by emerging, highly pathogenic, betacoronavirus strains, emphasizing on SARS-CoV, MERS-CoV and SARS-CoV-2. We focus on shared genomic features of the betacoronaviruses and the application of genomic information to phylogenetic analysis, molecular epidemiology and the design of diagnostic systems, potential drugs and vaccine candidates.
机译:在21世纪,出现了三个高度致病的贝替兰省病毒,具有令人震惊的人类发病率和病例。基因组信息已被广泛用于了解2002 - 2003年重症急性呼吸综合征(SARS)和2012年中东呼吸综合征(MERS)爆发的癌症中冠状病毒的发病机制,动物来源和传播方式。此外,基因组测序和生物信息分析在2019年2019-2020冠状病毒疾病的战斗中具有前所未有的相关性(Covid-19)大流行,这是由人类历史上的冠状病毒引起的最新和最毁灭性的爆发。在这里,我们审查了基因组信息如何用于解决由于新兴,高致病性,贝昔卢病毒菌株引起的爆发,并强调SARS-COV,MERS-COV和SARS-COV-2。我们专注于德贝罗吞噬物质的共享基因组特征以及基因组信息在系统发育分析,分子流行病学和诊断系统设计,潜在药物和疫苗候选方面的应用。

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