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促进虫媒病毒生存的生态机制:罗斯河病毒传播的数学模型

Ecological mechanisms that promote arbovirus survival: a mathematical model of Ross River virus transmission.

作者信息

Glass K

机构信息

National Centre for Epidemiology and Population Health, The Australian National University, Canberra, ACT 0200, Australia.

出版信息

Trans R Soc Trop Med Hyg. 2005 Apr;99(4):252-60. doi: 10.1016/j.trstmh.2004.08.004.

Abstract

Many assessments of host and vector competence for arboviruses focus on level and length of infectivity and ignore ecological mechanisms that contribute to virus survival. In this paper, mathematical models are used to compare local survival mechanisms for a range of scenarios, using Ross River virus as a case study. Ross River virus is an Australian arbovirus with many mosquito vectors and reservoir hosts. The mechanisms for maintaining long-term transmission of the virus vary between salt and freshwater mosquito vectors, and according to the availability of susceptible hosts. The models demonstrate that overwintering of virus in adult freshwater mosquitoes requires a large host population, while overwintering of virus in infected eggs of saltwater mosquitoes is an effective survival strategy when filial infection rates are high. The virus survives longer when both salt and freshwater mosquito species are included in the model than when only one mosquito species is present. When the marsupial host is replaced by a host with higher birth rate and shorter infectious period, the virus survived longer under all models. This suggests that birth rate can be a key factor when assessing the competence of reservoir hosts to maintain virus transmission.

摘要

许多针对虫媒病毒的宿主和传播媒介能力评估都聚焦于感染性的水平和持续时间,而忽略了有助于病毒存活的生态机制。在本文中,以罗斯河病毒为例,运用数学模型比较了一系列情况下的本地存活机制。罗斯河病毒是一种澳大利亚虫媒病毒,有多种蚊子作为传播媒介和多种储存宿主。病毒长期传播的维持机制因咸水和淡水蚊子传播媒介而异,也取决于易感宿主的可获得性。模型表明,病毒在成年淡水蚊子体内越冬需要大量宿主种群,而当子代感染率较高时,病毒在咸水蚊子的受感染卵中越冬是一种有效的存活策略。与仅包含一种蚊子物种的模型相比,当模型中同时包含咸水和淡水蚊子物种时,病毒存活时间更长。当有袋类宿主被出生率更高、感染期更短的宿主取代时,在所有模型下病毒存活时间都更长。这表明在评估储存宿主维持病毒传播的能力时,出生率可能是一个关键因素。

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