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Parasite epidemiology in a changing world: can molecular phylogeography help us tell the wood from the trees?

机译:瞬息万变的世界中的寄生虫流行病学:分子系统地理学能否帮助我们从树上分辨木头?

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摘要

Molecular phylogeography has revolutionised our ability to infer past biogeographic events from cross-sectional data on current parasite populations. In ecological parasitology, this approach has been used to address fundamental questions concerning host-parasite co-evolution and geographic patterns of spread, and has raised many technical issues and problems of interpretation. For applied parasitologists, the added complexity inherent in adding population genetic structure to perceived parasite distributions can sometimes seem to cloud rather than clarify approaches to control. In this paper, we use case studies firstly to illustrate the potential extent of cryptic diversity in parasite and parasitoid populations, secondly to consider how anthropogenic influences including movement of domestic animals affect the geographic distribution and host associations of parasite genotypes, and thirdly to explore the applied relevance of these processes to parasites of socio-economic importance. The contribution of phylogeographic approaches to deeper understanding of parasite biology in these cases is assessed. Thus, molecular data on the emerging parasites Angiostrongylus vasorum in dogs and wild canids, and the myiasis-causing flies Lucilia spp. in sheep and Cochliomyia hominovorax in humans, lead to clear implications for control efforts to limit global spread. Broader applications of molecular phylogeography to understanding parasite distributions in an era of rapid global change are also discussed.
机译:分子系统地理学彻底改变了我们从当前寄生虫种群的横断面数据推断过去的生物地理事件的能力。在生态寄生虫学中,该方法已用于解决有关宿主-寄生虫共同进化和传播地理格局的基本问题,并提出了许多技术问题和解释问题。对于应用寄生虫学家而言,在将种群遗传结构添加到感知到的寄生虫分布中时固有的增加的复杂性有时似乎会变得模糊不清,而不是阐明控制方法。在本文中,我们首先通过案例研究来说明寄生虫和类寄生虫种群中隐性多样性的潜在范围,其次要考虑人为因素(包括家畜的移动)如何影响寄生虫基因型的地理分布和寄主关联,其次要探讨将这些过程的相关性应用于具有社会经济重要性的寄生虫。在这些情况下,评估了系统地理学方法对深入了解寄生虫生物学的贡献。因此,关于狗和野生犬科动物以及引起蝇ia病的苍蝇Lucilia spp出现的寄生虫血管线虫血管瘤的分子数据。在人类的绵羊和人霍乱单胞菌中,对限制全球传播的控制工作产生了明显的影响。还讨论了分子系统地理学在理解快速全球变化时代中的寄生虫分布方面的广泛应用。

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