Dybowski R, Restif O, Price D J, Mastroeni P
Department of Veterinary Medicine, University of Cambridge, Madingley Road, Cambridge, CB3 0ES, UK.
Department of Veterinary Medicine, University of Cambridge, Madingley Road, Cambridge, CB3 0ES, UK.
J Theor Biol. 2017 Dec 21;435:218-228. doi: 10.1016/j.jtbi.2017.09.011. Epub 2017 Sep 14.
Recent technical developments in microbiology have led to new discoveries on the within-host dynamics of bacterial infections in laboratory animals. In particular, they have highlighted the importance of stochastic bottlenecks at the onset of invasive disease. A number of approaches exist for bottleneck-size estimation with respect to within-host bacterial infections; however, some are more appropriate than others under certain circumstances. A Bayesian comparison of several approaches is made in terms of the availability of isogenic multitype bacteria (e.g., WITS), knowledge of post-bottleneck dynamics, and the suitability of dilution with monotype bacteria. A sampling approach to bottleneck-size estimation is also introduced. The results are summarised by a guiding flowchart, which we hope will promote the use of quantitative models in microbiology to refine the analysis of animal experiment data.
微生物学领域最近的技术发展带来了关于实验动物体内细菌感染动态的新发现。特别是,这些发展凸显了侵袭性疾病发作时随机瓶颈的重要性。对于宿主内细菌感染的瓶颈大小估计,存在多种方法;然而,在某些情况下,有些方法比其他方法更合适。根据同基因多型细菌(如WITS)的可用性、瓶颈后动态的知识以及单型细菌稀释的适用性,对几种方法进行了贝叶斯比较。还介绍了一种瓶颈大小估计的抽样方法。结果通过一个指导流程图进行总结,我们希望这将促进微生物学中定量模型的使用,以完善动物实验数据的分析。