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Detection of Sindbis and Inkoo Virus RNA in Genetically Typed Mosquito Larvae Sampled in Northern Sweden

机译:在瑞典北部采样的基因型蚊子幼虫中检测信德比斯和Inkoo病毒RNA

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摘要

>Introduction: Mosquito-borne viruses have a widespread distribution across the globe and are known to pose serious threats to human and animal health. The maintenance and dissemination of these viruses in nature are driven through horizontal and vertical transmission. In the temperate climate of northern Sweden, there is a dearth of knowledge on whether mosquito-borne viruses that occur are transmitted transovarially. To gain a better understanding of mosquito-borne virus circulation and maintenance, mosquito larvae were sampled in northern Sweden during the first and second year after a large outbreak of Ockelbo disease in 2013 caused by Sindbis virus (SINV).>Materials and Methods: A total of 3123 larvae were sampled during the summers of 2014 and 2015 at multiple sites in northern Sweden. The larvae were homogenized and screened for viruses using RT-PCR and sequencing. Species identification of selected larvae was performed by genetic barcoding targeting the cytochrome C oxidase subunit I gene.>Results and Discussion: SINV RNA was detected in mosquito larvae of three different species, Ochlerotatus (Oc.) communis, Oc. punctor, and Oc. diantaeus. Inkoo virus (INKV) RNA was detected in Oc. communis larvae. This finding suggested that these mosquitoes could support transovarial transmission of SINV and INKV. Detection of virus in mosquito larva may serve as an early warning for emerging arboviral diseases and add information to epidemiological investigations before, during, and after outbreaks. Furthermore, our results demonstrated the relevance of genetic barcoding as an attractive and effective method for mosquito larva typing. However, further mosquito transmission studies are needed to ascertain the possible role of different mosquito species and developmental stages in the transmission cycle of arboviruses.
机译:>简介:蚊媒病毒在全球范围内分布广泛,已知对人类和动物健康构成严重威胁。这些病毒在自然界的维持和传播是通过水平和垂直传播来驱动的。在瑞典北部的温带气候中,关于是否存在跨蚊传播的蚊媒病毒缺乏了解。为了更好地了解蚊媒病毒的传播和维持,2013年由辛德比斯病毒(SINV)引起的Ockelbo病暴发后的第一年和第二年,在瑞典北部采样了蚊虫幼虫。>材料和方法::2014年和2015年夏季,在瑞典北部的多个地点共采样了3123个幼虫。将幼虫匀浆并使用RT-PCR和测序筛选病毒。通过针对细胞色素C氧化酶亚基I基因的遗传条形码对选定的幼虫进行物种鉴定。>结果与讨论:在三种不同物种的蚊(Oclerotatus(Oc。)communis,Oc)的蚊虫幼虫中检测到SINV RNA。 。穿孔器和Oc。狄安太斯。在Oc中检测到Inkoo病毒(INKV)RNA。幼虫。这一发现表明,这些蚊子可以支持SINV和INKV的经卵巢传播。在蚊虫幼虫中检测病毒可以作为新兴的虫媒病毒疾病的预警,并且可以在爆发之前,之中和之后为流行病学调查提供信息。此外,我们的结果证明了遗传条形码作为蚊虫幼虫分型的一种有吸引力且有效的方法的相关性。但是,需要进一步的蚊子传播研究来确定不同蚊子种类和发育阶段在虫媒病毒传播周期中的可能作用。

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