栖息地和宿主对蜱虫入侵影响的建模

Q3 Mathematics Letters in Biomathematics Pub Date : 2018-12-14 DOI:10.1080/23737867.2017.1412811
Robyn M. Nadolny, H. Gaff
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引用次数: 8

摘要

摘要由于景观的人为变化、气候变量的变化以及适宜寄主物种和蜱类栖息地数量的增加,许多蜱类物种正在入侵新的地区。然而,栖息地和宿主对蜱传播和蜱种群建立的相对影响仍然存在疑问。开发了一个基于空间显式代理的模型,以探索在蜱虫引入新环境后的几年内,普通蜱虫种群的时空动态。然后,对通用模型进行了调整,以调查最近两种蜱类入侵美国大西洋中部的案例研究。最近,亲缘硬蜱和斑硬蜱这两种蜱类同时扩大了范围,这为确定在野外观察到的入侵模式是否可以在计算机上小规模复制提供了机会。这里提出的模型表明,对于全身性寄生虫来说,对于寄生虫范围扩大的空间和遗传模式,栖息地连通性是比宿主流动性更好的指标。此外,我们的结果证明了将遗传变量纳入基于主体的模型的效用:基因流作为测量扩散的代理,模型可以使用现场结果进行验证。
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Modelling the effects of habitat and hosts on tick invasions
Abstract Many tick species are invading new areas because of anthropogenic changes in the landscape, shifting climatic variables and increasing populations of suitable host species and tick habitat. However, the relative influences of habitat and hosts in tick dispersal and tick population establishment remain in question. A spatially explicit agent-based model was developed to explore the spatio-temporal dynamics of a generic tick population in the years immediately following the introduction of ticks into a novel environment. The general model was then adapted to investigate a case study of two recent tick species invasions into the Mid-Atlantic United States. The recent simultaneous range expansions of two ixodid tick species, Ixodes affinis and Amblyomma maculatum, provided an opportunity to determine if invasion patterns observed in the field could be replicated in silico on a small scale. The models presented here indicated that for generalist parasites, habitat connectivity is a better indicator than host mobility for spatial and genetic patterns of parasite range expansion. In addition, our results demonstrate the utility of including genetic variables into agent-based models: gene flow functions as a proxy for measuring dispersal, and models can be validated using results from the field.
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来源期刊
Letters in Biomathematics
Letters in Biomathematics Mathematics-Statistics and Probability
CiteScore
2.00
自引率
0.00%
发文量
0
审稿时长
14 weeks
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