虹膜病毒工程:逆向遗传和病毒救援系统的发展。

IF 4 2区 医学 Q2 VIROLOGY
Journal of Virology Pub Date : 2025-05-20 Epub Date: 2025-04-17 DOI:10.1128/jvi.01852-24
Daria Vladimirova, Daniela Kunecova, Mariana Nascimento, Ji Yoon Kim, Dusan Kunec, Jakob Trimpert
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引用次数: 0

摘要

虹膜病毒是一类大型DNA病毒,可感染昆虫和变温脊椎动物,包括两栖动物、爬行动物和鱼类。值得注意的是,Ranavirus属的成员导致鱼类和两栖动物大量死亡,威胁到水产养殖并导致全球两栖动物数量下降。尽管虹膜病毒无所不在,影响巨大,但由于缺乏反向遗传系统,虹膜病毒生物学的关键方面仍然未知。在这项研究中,我们开发、鉴定并利用了蛙病毒3 (FV3, Ranavirus rana1)的反向遗传系统,这是研究最广泛的虹膜病毒之一。获救的病毒表现出与亲本病毒分离物相同的生长和表型特性。此外,我们利用异源虹膜病毒作为辅助物,建立了一种从基因组DNA重构病毒的替代方法。这种新颖的方法能够快速、方便地从裸露的DNA中拯救修饰的病毒。本研究中描述的反向遗传和救援系统将通过促进酵母或细菌中病毒基因组的有效遗传修饰来推进虹膜病毒的研究。这可以为阐明病毒基因的功能扫清道路,并允许对虹膜病毒生物学有更详细的了解。此外,由于FV3具有混杂性,能够感染来自不同种类动物的宿主,因此FV3系统有可能作为开发用于多种鱼类和两栖动物的改良活疫苗的平台。病毒对水产养殖和全球两栖动物种群构成重大威胁,但由于缺乏反向遗传系统,研究一直受到阻碍。在这项研究中,我们描述了这种病毒家族的第一个这样的系统的发展。我们构建了一个青蛙病毒3 (FV3)的合成克隆,它可以在酵母和细菌中繁殖和遗传操作,产生的病毒具有与亲本病毒分离物相同的生物学特性。此外,我们开发了一种新的基于辅助病毒的系统,用于从纯化的DNA中拯救FV3。该系统为提高我们对虹膜病毒生物学的理解提供了重要的工具,并为开发修饰的活病毒疫苗提供了平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering iridoviruses: development of reverse genetics and virus rescue systems.

Iridoviruses are a family of large DNA viruses that infect insects and poikilotherm vertebrates, including amphibians, reptiles, and fish. Notably, members of the genus Ranavirus cause mass mortality in fish and amphibians, threatening aquaculture and contributing to global amphibian decline. Despite their omnipresence and impact, key aspects of iridovirus biology remain unknown, largely due to the absence of reverse genetics systems. In this study, we developed, characterized, and utilized a reverse genetics system for frog virus 3 (FV3, Ranavirus rana1), one of the most widely studied iridoviruses. The rescued virus exhibits growth and phenotypic properties identical to those of the parental virus isolate. Furthermore, we established an alternative approach of virus reconstitution from genomic DNA, utilizing a heterologous iridovirus as a helper. This novel approach enables rapid and facile rescue of modified viruses from naked DNA. The reverse genetics and rescue systems described in this study will advance iridovirus research by facilitating efficient genetic modification of the virus genome in yeast or bacteria. This could clear the path to elucidating functions of virus genes and allow a much more detailed understanding of iridovirus biology. Moreover, owing to the promiscuous nature of FV3 with its ability to infect hosts from different classes of animals, the FV3 system has the potential to serve as a platform for the development of modified live vaccines for a variety of fish and amphibian species.IMPORTANCEIridoviruses pose a substantial threat to aquaculture and global amphibian populations, yet research has been hindered by the lack of a reverse genetics system. In this study, we describe the development of the first such system for this virus family. We constructed a synthetic clone of frog virus 3 (FV3) that can be propagated and genetically manipulated in both yeast and bacteria, yielding a virus that has biological properties identical to the parental virus isolate. Furthermore, we developed a novel helper virus-based system for the rescue of FV3 from purified DNA. This system provides an essential tool for advancing our understanding of iridovirus biology and serves as a platform for the development of modified live virus vaccines.

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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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