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Wolbachia restricts insect specific flavivirus infection in Aedes aegypti cells

机译:Wolbachia限制了埃及伊蚊细胞中的昆虫特异性黄病毒感染

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摘要

Mosquito-borne viruses are known to cause disease in humans and livestock and are often difficult to control due the lack of specific antivirals and vaccines. The Wolbachia endosymbiont has been widely studied for its ability to restrict positive strand RNA virus infection in mosquitoes, although little is known about the precise antiviral mechanism. In recent years, a variety of insect-specific viruses have been discovered in mosquitoes and an interaction with mosquito-borne viruses have been reported for some of them; however nothing is known about the effect of Wolbachia on insect specific virus infection in mosquitoes. Here, we show that transinfection of the drosophila derived wMelPop Wolbachia strain into Ae. aegypti-derived cells resulted in inhibition and even clearance of the persistent cell fusing agent flavivirus infection in these cells. This, broadens the antiviral activity of Wolbachia from acute infections to persistent infections and from arboviruses to mosquito-specific viruses. In contrast, no effect on the Phasi-Charoen-like bunyavirus persistent infection in these cells was observed, suggesting a difference in Wolbachia inhibition between positive and negative strand RNA viruses.
机译:蚊媒病毒已知会导致人类和牲畜疾病,并且由于缺乏特定的抗病毒剂和疫苗而常常难以控制。尽管对确切的抗病毒机制知之甚少,但Wolbachia内共生体具有抑制蚊子中正链RNA病毒感染的能力,因此已被广泛研究。近年来,在蚊子中发现了多种昆虫特异性病毒,并且据报道其中一些与蚊子传播的病毒有相互作用。但是,关于沃尔巴氏菌对蚊子中昆虫特异性病毒感染的影响还一无所知。在这里,我们显示了果蝇衍生的wMelPop Wolbachia株到Ae的转染。埃及衍生细胞导致这些细胞中持久性细胞融合剂黄病毒感染的抑制甚至清除。这将Wolbachia的抗病毒活性从急性感染扩展到持续感染,从虫媒病毒扩展到蚊子特异性病毒。相比之下,在这些细胞中未观察到对Phasi-Charoen样布尼亚病毒持续感染的影响,表明正链RNA病毒和负链RNA病毒在Wolbachia抑制上的差异。

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