Early phylogenetic estimate of the effective reproduction number of SARS‐CoV‐2
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Open Access
- 25 February 2020
- journal article
- research article
- Published by Wiley in Journal of Medical Virology
- Vol. 92 (6) , 675-679
- https://doi.org/10.1002/jmv.25723
Abstract
To reconstruct the evolutionary dynamics of the 2019 novel coronavirus recently causing an outbreak in Wuhan, China, 52 SARS‐CoV‐2 genomes available on 04 February 2020 at GISAID were analysed. The two models used to estimate the reproduction number (coalescent‐based exponential growth and a birth‐death skyline method) indicated an estimated mean evolutionary rate of 7.8 x 10‐4 subs/site/year (range 1.1x10‐4–15x10‐4) and a mean tMRCA of the tree root of 73 days. The estimated R value was 2.6 (range 2.1‐5.1), and increased from 0.8 to 2.4 in December 2019. The estimated mean doubling time of the epidemic was between 3.6 and 4.1 days. This study proves the usefulness of phylogeny in supporting the surveillance of emerging new infections even as the epidemic is growing.Keywords
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This publication has 19 references indexed in Scilit:
- Temporal Variations in the Effective Reproduction Number of the 2014 West Africa Ebola OutbreakPLoS Currents, 2014
- Hospital Outbreak of Middle East Respiratory Syndrome CoronavirusNew England Journal of Medicine, 2013
- Birth–death skyline plot reveals temporal changes of epidemic spread in HIV and hepatitis C virus (HCV)Proceedings of the National Academy of Sciences, 2012
- Improving the Accuracy of Demographic and Molecular Clock Model Comparison While Accommodating Phylogenetic UncertaintyMolecular Biology and Evolution, 2012
- Bayesian Phylogenetics with BEAUti and the BEAST 1.7Molecular Biology and Evolution, 2012
- jModelTest: Phylogenetic Model AveragingMolecular Biology and Evolution, 2008
- Comparative population dynamics of HIV-1 subtypes B and C: subtype-specific differences in patterns of epidemic growthInfection, Genetics and Evolution, 2005
- Bayesian Coalescent Inference of Past Population Dynamics from Molecular SequencesMolecular Biology and Evolution, 2005
- Transmission Dynamics and Control of Severe Acute Respiratory SyndromeScience, 2003
- The Epidemic Behavior of the Hepatitis C VirusScience, 2001