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病毒系统发育学生物树形状和结构的建模。

Modelling tree shape and structure in viral phylodynamics.

机构信息

Department of Veterinary Medicine, University of Cambridge, Madingley Road, Cambridge, Cambridgeshire CB3 0ES, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2013 Feb 4;368(1614):20120208. doi: 10.1098/rstb.2012.0208. Print 2013 Mar 19.

Abstract

Epidemiological models have highlighted the importance of population structure in the transmission dynamics of infectious diseases. Using HIV-1 as an example of a model evolutionary system, we consider how population structure affects the shape and the structure of a viral phylogeny in the absence of strong selection at the population level. For structured populations, the number of lineages as a function of time is insufficient to describe the shape of the phylogeny. We develop deterministic approximations for the dynamics of tips of the phylogeny over evolutionary time, the number of 'cherries', tips that share a direct common ancestor, and Sackin's index, a commonly used measure of phylogenetic imbalance or asymmetry. We employ cherries both as a measure of asymmetry of the tree as well as a measure of the association between sequences from different groups. We consider heterogeneity in infectiousness associated with different stages of HIV infection, and in contact rates between groups of individuals. In the absence of selection, we find that population structure may have relatively little impact on the overall asymmetry of a tree, especially when only a small fraction of infected individuals is sampled, but may have marked effects on how sequences from different subpopulations cluster and co-cluster.

摘要

流行病学模型强调了人口结构在传染病传播动力学中的重要性。我们以 HIV-1 为例,考虑了在没有群体水平上的强烈选择的情况下,人口结构如何影响病毒系统发生的形状和结构。对于结构种群,谱系的数量随时间的变化不足以描述系统发生的形状。我们为系统发生时间上的分支末端动态、“樱桃”数量(共享直接共同祖先的分支)以及 Sackin 指数(常用的衡量系统发生不平衡或不对称的指标)开发了确定性近似值。我们既将樱桃用作衡量树的不对称性的指标,也用作衡量来自不同群体的序列之间的关联的指标。我们考虑与 HIV 感染的不同阶段相关的传染性以及个体群体之间的接触率的异质性。在没有选择的情况下,我们发现人口结构对树的整体不对称性的影响可能相对较小,尤其是当仅对一小部分感染个体进行采样时,但对来自不同亚群的序列如何聚类和共同聚类可能有明显影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92ec/3678332/98aa98432818/rstb20120208-g1.jpg

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