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The Role of Temperature in Transmission of Zoonotic Arboviruses

机译:温度在人畜共患虫虫媒病毒传播中的作用

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摘要

We reviewed the literature on the role of temperature in transmission of zoonotic arboviruses. Vector competence is affected by both direct and indirect effects of temperature, and generally increases with increasing temperature, but results may vary by vector species, population, and viral strain. Temperature additionally has a significant influence on life history traits of vectors at both immature and adult life stages, and for important behaviors such as blood-feeding and mating. Similar to vector competence, temperature effects on life history traits can vary by species and population. Vector, host, and viral distributions are all affected by temperature, and are generally expected to change with increased temperatures predicted under climate change. Arboviruses are generally expected to shift poleward and to higher elevations under climate change, yet significant variability on fine geographic scales is likely. Temperature effects are generally unimodal, with increases in abundance up to an optimum, and then decreases at high temperatures. Improved vector distribution information could facilitate future distribution modeling. A wide variety of approaches have been used to model viral distributions, although most research has focused on the West Nile virus. Direct temperature effects are frequently observed, as are indirect effects, such as through droughts, where temperature interacts with rainfall. Thermal biology approaches hold much promise for syntheses across viruses, vectors, and hosts, yet future studies must consider the specificity of interactions and the dynamic nature of evolving biological systems.
机译:我们回顾了关于温度在人畜共患虫虫媒病毒传播中的作用的文献。载体能力受温度的直接和间接影响,并且通常随温度升高而增加,但结果可能因载体种类,种群和病毒株而异。温度还对载体在未成年和成年生命阶段的生活史特征以及重要行为(如采血和交配)有重要影响。与媒介能力相似,温度对生活史特征的影响可能因物种和种群而异。媒介,宿主和病毒的分布都受温度影响,通常预计会随着气候变化下预测温度的升高而变化。人们通常期望虫媒病毒会在气候变化下向极地移动并移向更高的高度,但是在精细的地理尺度上仍可能会出现明显的变异。温度效应通常是单峰的,其丰度增加到最佳状态,然后在高温下降低。改进的向量分布信息可以促进将来的分布建模。尽管大多数研究都集中在西尼罗河病毒上,但已使用多种方法来模拟病毒分布。经常观察到直接的温度效应,以及间接效应,例如由于干旱与干旱相互作用,温度与降雨相互作用。热生物学方法对于跨病毒,载体和宿主的合成具有广阔的前景,但未来的研究必须考虑相互作用的特异性和不断发展的生物系统的动态性质。

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