Molecular Evolution of the SARS Coronavirus During the Course of the SARS Epidemic in China

2004 Science 810 citations

Abstract

Sixty-one SARS coronavirus genomic sequences derived from the early, middle, and late phases of the severe acute respiratory syndrome (SARS) epidemic were analyzed together with two viral sequences from palm civets. Genotypes characteristic of each phase were discovered, and the earliest genotypes were similar to the animal SARS-like coronaviruses. Major deletions were observed in the Orf8 region of the genome, both at the start and the end of the epidemic. The neutral mutation rate of the viral genome was constant but the amino acid substitution rate of the coding sequences slowed during the course of the epidemic. The spike protein showed the strongest initial responses to positive selection pressures, followed by subsequent purifying selection and eventual stabilization.

Keywords

CoronavirusBiologySevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Coronavirus disease 2019 (COVID-19)GenomeVirologyGenotypeCoding regionSevere acute respiratory syndromeGenetics2019-20 coronavirus outbreakVirusMutationGeneInfectious disease (medical specialty)MedicineOutbreakDisease

MeSH Terms

AdaptationPhysiologicalAmino Acid SubstitutionAnimalsBase SequenceCarnivoraChinaCluster AnalysisCoronavirusCoronavirus M ProteinsDisease OutbreaksEvolutionMolecularGenomeViralGenotypeHumansMembrane GlycoproteinsMolecular Sequence DataMutationNucleic Acid ConformationOpen Reading FramesPhylogenyPoint MutationRNAViralSevere acute respiratory syndrome-related coronavirusSelectionGeneticSequence DeletionSevere Acute Respiratory SyndromeSpike GlycoproteinCoronavirusViral Envelope ProteinsViral Matrix Proteins

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Publication Info

Year
2004
Type
article
Volume
303
Issue
5664
Pages
1666-1669
Citations
810
Access
Closed

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810
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Cite This

Jian He, Peng Guo, Min Jun et al. (2004). Molecular Evolution of the SARS Coronavirus During the Course of the SARS Epidemic in China. Science , 303 (5664) , 1666-1669. https://doi.org/10.1126/science.1092002

Identifiers

DOI
10.1126/science.1092002
PMID
14752165

Data Quality

Data completeness: 81%