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干旱混合利用系统中野生与家养有蹄类动物之间寄生虫季节性溢出的预测与减弱

Prediction and attenuation of seasonal spillover of parasites between wild and domestic ungulates in an arid mixed-use system.

作者信息

Walker Josephine G, Evans Kate E, Rose Vineer Hannah, van Wyk Jan A, Morgan Eric R

机构信息

School of Biological Sciences University of Bristol Bristol UK.

Cabot Institute University of Bristol Bristol UK.

出版信息

J Appl Ecol. 2018 Jul;55(4):1976-1986. doi: 10.1111/1365-2664.13083. Epub 2018 Jan 28.

Abstract

Transmission of parasites between host species affects host population dynamics, interspecific competition, and ecosystem structure and function. In areas where wild and domestic herbivores share grazing land, management of parasites in livestock may affect or be affected by sympatric wildlife due to cross-species transmission.We develop a novel method for simulating transmission potential based on both biotic and abiotic factors in a semi-arid system in Botswana. Optimal timing of antiparasitic treatment in livestock is then compared under a variety of alternative host scenarios, including seasonally migrating wild hosts.In this region, rainfall is the primary driver of seasonality of transmission, but wildlife migration leads to spatial differences in the effectiveness of treatment in domestic animals. Additionally, competent migratory wildlife hosts move parasites across the landscape.Simulated transmission potential matches observed patterns of clinical disease in livestock in the study area. Increased wildlife contact is correlated with a decrease in disease, suggesting that non-competent wild hosts may attenuate transmission by removing infective parasite larvae from livestock pasture.Optimising the timing of treatment according to within-year rainfall patterns was considerably more effective than treating at a standard time of year. By targeting treatment in this way, efficient control can be achieved, mitigating parasite spillover from wildlife where it does occur. . This model of parasite transmission potential enables evidence-based management of parasite spillover between wild and domestic species in a spatio-temporally dynamic system. It can be applied in other mixed-use systems to mitigate parasite transmission under altered climate scenarios or changes in host ranges.

摘要

寄生虫在宿主物种之间的传播会影响宿主种群动态、种间竞争以及生态系统的结构和功能。在野生和家养食草动物共享放牧地的地区,由于跨物种传播,家畜体内寄生虫的管理可能会影响同域野生动物,或者受到同域野生动物的影响。我们基于博茨瓦纳一个半干旱系统中的生物和非生物因素,开发了一种模拟传播潜力的新方法。然后,在包括季节性迁徙野生宿主在内的各种替代宿主情景下,比较家畜体内抗寄生虫治疗的最佳时机。在该地区,降雨是传播季节性的主要驱动因素,但野生动物迁徙导致家畜治疗效果出现空间差异。此外,有传播能力的迁徙野生动物宿主会在整个区域内传播寄生虫。模拟的传播潜力与研究区域内家畜临床疾病的观察模式相符。与野生动物接触增加与疾病减少相关,这表明无传播能力的野生宿主可能通过清除家畜牧场中的感染性寄生虫幼虫来减弱传播。根据年内降雨模式优化治疗时机比在一年中的标准时间进行治疗要有效得多。通过这种方式针对性地进行治疗,可以实现有效控制,减轻确实发生的野生动物寄生虫溢出。这种寄生虫传播潜力模型能够在时空动态系统中对野生和家养物种之间的寄生虫溢出进行循证管理。它可应用于其他混合使用系统,以减轻气候变化情景改变或宿主范围变化情况下的寄生虫传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f901/6032883/7da5f96cf66c/JPE-55-1976-g001.jpg

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