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From one host to another:tracking vector movements using microsatellite markers

机译:从一台主机到另一台主机:使用微卫星标记跟踪矢量运动

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In principle, the solution to stopping the spread of any vectorborne pathogen is a simple one - just stop infected vectors from biting new hosts and the pathogen cannot spread. Importantly, this does not necessarily require killing all vectors, or protecting all hosts. Transmission only occurs when an infected vector moves to a new host, and so knowing how vectors move between hosts in nature and how they choose hosts is crucial to understanding transmission. For example, the infection status of a potential vector or that of a potential host would have a huge influence on pathogen transmission if it affected vector movement or host choice. Remarkably little is known about how vectors move between and choose hosts in nature, in part because of the logistical difficulties of tracking vector movement. This is why the article by Levin and Parker (2014) in this issue of Molecular Ecology is so exciting.
机译:原则上,阻止任何媒介传播的病原体传播的解决方案是一种简单的方法-仅阻止被感染的媒介咬住新宿主,病原体就无法传播。重要的是,这并不一定需要杀死所有载体或保护所有宿主。传播仅在被感染的媒介移至新宿主时发生,因此了解媒介在自然界中的宿主之间如何移动以及它们如何选择宿主对于理解传播至关重要。例如,如果潜在的媒介或潜在宿主的感染状况影响了媒介的移动或宿主的选择,它将对病原体的传播产生巨大的影响。关于向量如何在自然界之间移动以及如何选择宿主的知之甚少,部分原因是跟踪向量运动的后勤困难。这就是为什么Levin和Parker(2014)在《分子生态学》上发表如此精彩的原因。

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