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The landscape genetics of infectious disease emergence and spread

机译:传染病出现和传播的景观遗传学

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The spread of parasites is inherently a spatial process often embedded in physically complex landscapes. It is therefore not surprising that infectious disease researchers are increasingly taking a landscape genetics perspective to elucidate mechanisms underlying basic ecological processes driving infectious disease dynamics and to understand the linkage between spatially dependent population processes and the geographic distribution of genetic variation within both hosts and parasites. The increasing availability of genetic information on hosts and parasites when coupled to their ecological interactions can lead to insights for predicting patterns of disease emergence, spread and control. Here, we review research progress in this area based on four different motivations for the application of landscape genetics approaches: (i) assessing the spatial organization of genetic variation in parasites as a function of environmental variability, (ii) using host population genetic structure as a means to parameterize ecological dynamics that indirectly influence parasite populations, for example, gene flow and movement pathways across heterogeneous landscapes and the concurrent transport of infectious agents, (iii) elucidating the temporal and spatial scales of disease processes and (iv) reconstructing and understanding infectious disease invasion. Throughout this review, we emphasize that landscape genetic principles are relevant to infection dynamics across a range of scales from within host dynamics to global geographic patterns and that they can also be applied to unconventional 'landscapes' such as heterogeneous contact networks underlying the spread of human and livestock diseases. We conclude by discussing some general considerations and problems for inferring epidemiological processes from genetic data and try to identify possible future directions and applications for this rapidly expanding field.
机译:寄生虫的扩散本质上是一个空间过程,通常嵌入物理复杂的景观中。因此,毫不奇怪,传染病研究人员越来越多地从景观遗传学的角度来阐明驱动传染病动态的基本生态过程的机制,并了解空间依赖性种群过程与寄主和寄生虫内遗传变异的地理分布之间的联系。当宿主和寄生虫的生态信息相互作用时,遗传信息在宿主和寄生虫上的可用性不断提高,可以为预测疾病的发生,传播和控制方式提供见识。在这里,我们基于景观遗传学方法应用的四种不同动机来回顾该领域的研究进展:(i)评估寄生虫遗传变异的空间组织,并将其作为环境变异性的函数;(ii)使用宿主种群的遗传结构作为一种参数化可以间接影响寄生虫种群的生态动力学参数的方法,例如,跨异质景观的基因流和移动路径以及传染原的同时运输;(iii)阐明疾病过程的时空尺度,以及(iv)重建和理解传染病入侵。在整个审查过程中,我们强调景观遗传学原理与从宿主动态到全球地理格局的各个尺度上的感染动态有关,它们还可以应用于非常规的“景观”,例如人类传播背后的异构接触网络。和牲畜疾病。最后,我们讨论了从遗传数据推断流行病学过程的一些一般考虑因素和问题,并尝试为这个快速发展的领域确定可能的未来方向和应用。

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