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Distribution and Abundance of Aedes Caspius (pallas, 1771) and Aedes Vexans (meigen, 1830) in the Po Plain (northern Italy)

PARASITES & VECTORS(2024)

Istituto Zooprofilattico Sperimentale della Lombardia e dell’Emilia Romagna “B. Ubertini” | Istituto per le Piante da Legno e l’Ambiente | Istituto Zooprofilattico Sperimentale delle Venezie | Istituto Zooprofilattico Sperimentale del Piemonte | Centro Agricoltura Ambiente “G. Nicoli”

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Abstract
BackgroundKnowledge of the distribution and abundance of disease-causing mosquito vectors is fundamental for assessing the risk of disease circulation and introduction. Aedes caspius (Pallas, 1771) and Aedes vexans (Meigen, 1830) have been implicated, to different extents, in the circulation of several arthropod-borne viruses (arboviruses). These two mosquitoes are vectors of Tahyna virus in Europe and are considered potential vectors of Rift Valley fever virus, a virus not present but at risk of introduction on the continent.MethodsIn this work, we analysed abundance data collected during West Nile virus (WNV) surveillance in northern Italy (Po Plain) via 292 CO2-baited traps to evaluate the distribution and density of these two non-target mosquitoes. We modelled the distribution and abundance of these two mosquito species in the surveyed area using two distinct spatial analysis approaches (geostatistical and machine learning), which yielded congruent results.ResultsBoth species are more abundant close to the Po River than elsewhere, but Ae. caspius is present in the eastern and western parts of the plain, linked with the occurrence of rice fields and wetlands, while Ae. vexans is observed in the middle area of the plain.ConclusionsPresence and abundance data at the municipality level were obtained and made available through this work. This work demonstrates the importance of maintaining and improving entomological surveillance programs with an adequate sampling effort.
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Aedes caspius,Aedes vexans,Entomological surveillance
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要点】:研究通过两种空间分析方法探讨了意大利北部波河平原地区两种蚊子Aedes caspius和Aedes vexans的分布与丰度,为疾病传播风险评估提供依据。

方法】:采用292个CO2诱捕器收集的蚊子丰度数据,利用地理统计学和机器学习两种方法建模分析蚊子的分布与丰度。

实验】:在波河平原地区进行实验,使用CO2诱捕器收集数据,并使用地理统计学和机器学习模型分析,发现Aedes caspius主要分布在平原的东部和西部,与稻田和湿地有关,而Aedes vexans主要分布在中部地区。