Usutu virus (USUV) is an emerging zoonotic arbovirus that has caused an increasing number of animal and human cases in Europe in recent years. Understanding the vector species and avian hosts involved in the USUV enzootic cycle in an area of active circulation is vital to anticipate potential outbreaks. Mosquitoes were captured in 2020, while wild birds were sampled in both 2020 and 2021 in Extremadura, southwestern Spain. The presence of USUV in the mosquito vectors was assessed by a real-time reverse transcription-polymerase chain reaction (rRT-PCR) assay and confirmed by sequencing amplicons from two generic RT-PCR sets for flaviviruses. Sequences were analysed phylogenetically. Bird sera were screened for flavivirus antibodies with a blocking ELISA kit and subsequently tested for virus-specific antibodies with a micro-virus-neutralization test. Overall, 6,004 mosquitoes belonging to 13 species were captured, including some well-known flavivirus vectors (Culex pipiens, Cx. perexiguus, and Cx. univittatus). Of the 438 pools tested, USUV was detected in two pools of Cx. pipiens. Phylogenetic analysis using a fragment of the NS5 gene assigned the USUV detected the Africa 3 lineage. Out of 1,413 wild birds tested, USUV-specific antibodies were detected in 17 birds (1.2%, 10 males and 7 females) from eight species. The first detection of USUV Africa 3 lineage in mosquitoes from Spain, together with serologically positive resident wild birds in urban and rural areas, indicates active circulation and a possible risk of exposure for the human population, with necessity to establish specific surveillance plans.
Identification of Usutu Virus Africa 3 Lineage in a Survey of Mosquitoes and Birds from Urban Areas of Western Spain.
在对西班牙西部城市地区的蚊子和鸟类进行调查中鉴定出非洲乌苏图病毒3系
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作者:Bravo-Barriga Daniel, Ferraguti Martina, Magallanes Sergio, Aguilera-Sepúlveda Pilar, Llorente Francisco, Pérez-RamÃrez Elisa, Vázquez Ana, Guerrero-Carvajal Fátima, Sánchez-Seco MarÃa Paz, Jiménez-Clavero Miguel Ãngel, Mora-Rubio Carlos, Marzal Alfonso, Frontera Eva, de Lope Florentino
| 期刊: | Transboundary and Emerging Diseases | 影响因子: | 3.000 |
| 时间: | 2023 | 起止号: | 2023 Feb 22; 2023:6893677 |
| doi: | 10.1155/2023/6893677 | 研究方向: | 其它 |
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