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野生动物与家畜交界处西尼罗河病毒媒介丰度的环境决定因素。

Environmental determinants of West Nile virus vector abundance at the wildlife-livestock interface.

作者信息

Casades-Martí Laia, Peralbo-Moreno Alfonso, Delacour-Estrella Sarah, Ruiz-Fons Francisco

机构信息

Grupo Sanidad y Biotecnología (SaBio), Instituto de Investigación en Recursos Cinegéticos (IREC), CSIC-UCLM-JCCM, Ciudad Real, Spain.

Unizar, Departamento de Patologia Animal, Facultad de Veterinaria, Universidad de Zaragoza, Zaragoza, Spain.

出版信息

Med Vet Entomol. 2025 Mar;39(1):200-215. doi: 10.1111/mve.12774. Epub 2024 Nov 5.

Abstract

The diversity and abundance of vectors are essential parameters in the transmission dynamics of West Nile virus (WNV) between its avian reservoirs and clinically susceptible mammalian species. Knowing the determinants of vector abundance could be thus useful in preventing West Nile fever (WNF) cases and associated socio-economic impact. We designed a survey at the wildlife-livestock interface to test the hypothesis that variations in environmental favourability between anthropized and wild scenarios modulate WNV vector abundance and transmission risk. In a continental Mediterranean region where WNF has recently emerged, we selected nine sampling sites and allocated three areas to every site with a decreasing gradient of wildlife-livestock interaction: A-a horse farm where interaction is maximal; A-a zone of intermediate interaction 500-1000 m from the farm; and A-an entirely wild zone of low interaction 1-5 km from the farm. At a fortnightly frequency, we estimated mosquito abundance at each of the 27 study sites in May-December 2018 and April-July 2019. We estimated bird and mammal abundance, collected meteorological information and characterised mosquito habitat at the site scale. Thereafter, we studied the determinants of Culex spp., Culex pipiens sensu lato (s.l.) Linnaeus, 1758 (Diptera: Culicidae) and Culex theileri  Theobald, 1903 abundance by constructing negative binomial generalised linear mixed models. We identified 20 mosquito species, with a notable predominance of Culex spp. and, particularly, of Cx. pipiens s.l. We found differences in the spatiotemporal distribution of Culex spp. abundance and confirmed our hypothesis by finding important effects of local environmental variations in abundance. The accumulated rainfall in fortnights 4-14 and the mean temperature of the two fortnights before sampling were positively and statistically significantly associated with the abundance of Cx. pipiens s.l. (Z = 13.09, p < 0.001, and Z = 9.91, p < 0. 001, respectively) and Culex spp. (Z = 13.35, p < 0.001, and Z = 6.99, p < 0.001, respectively), while the mean temperature of the two previous fortnights was a positive statistically significant predictor (Z = 14.69, p < 0.001) of the abundance of Cx. theileri. The farm environment was the most conducive predictor to hosting Culex spp. compared with wild settings. Our results indicate that continental Mediterranean environments are favourable for WNV circulation and maintenance, especially the environment of anthropized rural settings such as farms. These results will have an impact on the spatiotemporal risk prediction of WNF emergence in continental Mediterranean environments.

摘要

病媒的多样性和数量是西尼罗河病毒(WNV)在其鸟类宿主和临床易感哺乳动物物种之间传播动态的关键参数。因此,了解病媒数量的决定因素有助于预防西尼罗河热(WNF)病例及其相关的社会经济影响。我们在野生动物与家畜的交界处设计了一项调查,以检验以下假设:人为环境和野生环境之间环境适宜性的差异会调节WNV病媒数量和传播风险。在一个最近出现WNF的地中海大陆地区,我们选择了9个采样点,并为每个采样点分配了3个区域,这些区域的野生动物与家畜的相互作用梯度逐渐降低:A——一个互动最为频繁的马场;A——距离马场500-1000米的中等互动区域;以及A——距离马场1-5公里的互动较少的完全野生区域。我们以两周为频率,在2018年5月至12月以及2019年4月至7月期间,对27个研究地点的蚊子数量进行了估算。我们估算了鸟类和哺乳动物的数量,收集了气象信息,并在采样点尺度上对蚊子栖息地进行了特征描述。此后,我们通过构建负二项式广义线性混合模型,研究了致倦库蚊、致倦库蚊复合组(狭义)(双翅目:蚊科)和泰勒库蚊数量的决定因素。我们鉴定出20种蚊子,其中致倦库蚊属显著占优,尤其是致倦库蚊复合组(狭义)。我们发现致倦库蚊属数量的时空分布存在差异,并通过发现当地环境变化对数量的重要影响,证实了我们的假设。第4-14个两周的累计降雨量以及采样前两个两周的平均温度与致倦库蚊复合组(狭义)(Z分别为13.09,p<0.001,以及Z为9.91,p<0.001)和致倦库蚊属(Z分别为13.35,p<0.001,以及Z为6.99,p<0.001)的数量呈正相关且具有统计学意义,而前两个两周的平均温度是泰勒库蚊数量的一个具有统计学意义的正预测因子(Z为14.69,p<0.001)。与野生环境相比,农场环境是最有利于致倦库蚊属生存的预测因素。我们的结果表明,地中海大陆环境有利于WNV的传播和维持,尤其是农场等人为化农村环境。这些结果将对地中海大陆环境中WNF出现的时空风险预测产生影响。

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