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The reverse genetics applied to fish RNA viruses

机译:反向遗传学应用于鱼类RNA病毒

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摘要

Aquaculture has expanded rapidly to become a major economic and food-producing sector worldwide these last 30 years. In parallel, viral diseases have emerged and rapidly spread from farm to farm causing enormous economic losses. The most problematic viruses encountered in the field are mainly, but not exclusively, RNA viruses belonging to the Novirhabdovirus, Aquabirnavirus, Alphavirus and Betanodavirus genera. The recent establishment of reverse genetics systems to recover infectious fish RNA viruses entirely from cDNA has made possible to genetically manipulate the viral genome. These systems have provided powerful tools to study all aspects of the virus biology and virus-host interactions but also gave the opportunity to use these viruses as live vaccines or as gene vectors. This review provides an overview on the recent breakthroughs achieved by using these reverse genetics systems in terms of viral protein function, virulence and host-specificity factor, vaccine development and vector design.
机译:在过去的30年中,水产养殖业迅速发展,已成为全球主要的经济和食品生产部门。同时,病毒性疾病已经出现并在农场之间迅速传播,造成巨大的经济损失。在该领域中遇到的最成问题的病毒主要是但不仅限于,属于诺韦氏杆菌病毒,水痘病毒,甲病毒和贝达氏病毒属的RNA病毒。最近建立的反向遗传学系统可以完全从cDNA中恢复感染性鱼RNA病毒,从而可以对病毒基因组进行遗传操作。这些系统为研究病毒生物学和病毒-宿主相互作用的各个方面提供了强大的工具,同时也为将这些病毒用作活疫苗或基因载体提供了机会。这篇综述从病毒蛋白质功能,毒力和宿主特异性因子,疫苗开发和载体设计等方面,概述了使用这些反向遗传学系统取得的最新突破。

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