Using Approximate Bayesian Computation to Estimate Tuberculosis Transmission Parameters From Genotype Data
- 1 July 2006
- journal article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 173 (3) , 1511-1520
- https://doi.org/10.1534/genetics.106.055574
Abstract
Tuberculosis can be studied at the population level by genotyping strains of Mycobacterium tuberculosis isolated from patients. We use an approximate Bayesian computational method in combination with a stochastic model of tuberculosis transmission and mutation of a molecular marker to estimate the net transmission rate, the doubling time, and the reproductive value of the pathogen. This method is applied to a published data set from San Francisco of tuberculosis genotypes based on the marker IS6110. The mutation rate of this marker has previously been studied, and we use those estimates to form a prior distribution of mutation rates in the inference procedure. The posterior point estimates of the key parameters of interest for these data are as follows: net transmission rate, 0.69/year [95% credibility interval (C.I.) 0.38, 1.08]; doubling time, 1.08 years (95% C.I. 0.64, 1.82); and reproductive value 3.4 (95% C.I. 1.4, 79.7). These figures suggest a rapidly spreading epidemic, consistent with observations of the resurgence of tuberculosis in the United States in the 1980s and 1990s.Keywords
This publication has 46 references indexed in Scilit:
- Inference for Stereological ExtremesJournal of the American Statistical Association, 2007
- genalex 6: genetic analysis in Excel. Population genetic software for teaching and researchMolecular Ecology Notes, 2005
- Likelihoods From Summary Statistics: Recent Divergence Between SpeciesGenetics, 2005
- Methods of quantifying and visualising outbreaks of tuberculosis using genotypic informationInfection, Genetics and Evolution, 2005
- GENETIC ANALYSIS OF COMPLEX DEMOGRAPHIC SCENARIOS: SPATIALLY EXPANDING POPULATIONS OF THE CANE TOAD, BUFO MARINUSEvolution, 2004
- The Control of Copy Number of IS6110 in Mycobacterium tuberculosisMolecular Biology and Evolution, 2004
- Comparative Evaluation of a New Effective Population Size Estimator Based on Approximate Bayesian ComputationGenetics, 2004
- Calculation of the Stability of the IS 6110 Banding Pattern in Patients with Persistent Mycobacterium tuberculosis DiseaseJournal of Clinical Microbiology, 2002
- Transmission of Tuberculosis in New York City -- An Analysis by DNA Fingerprinting and Conventional Epidemiologic MethodsNew England Journal of Medicine, 1994
- The Epidemiology of Tuberculosis in San Francisco -- A Population-Based Study Using Conventional and Molecular MethodsNew England Journal of Medicine, 1994