Molecular Virology and Pathogen Control Laboratory, Departamento de Biología, Facultad de Química y Biología, Universidad de Santiago de Chile (USACH), Santiago 9170022, Chile.
Poultry Diagnostic and Research Center, Department of Population Health, University of Georgia, Athens, GE 30602, USA.
Viruses. 2022 Mar 18;14(3):631. doi: 10.3390/v14030631.
Infectious salmon anemia virus (ISAV) is the etiological agent of infectious salmon anemia. It belongs to the genus isavirus, one of the genera of the family, as does Influenzavirus A. The ISAV genome comprises eight negative-sense single-stranded RNA segments that code for at least 10 proteins. Although some ISAV strains can reach 100% mortality rates, the factors that determine isavirus infectivity remain unknown. However, some studies suggest that segments 5 and 6 are responsible for the different degrees of virulence and infectivity among ISAV subtypes, unlike the influenza A virus, where most segments are involved in the virus infectivity. In this work, synthetic reassortant viruses for the eight segments of ISAV were generated by reverse genetics, combining a highly virulent virus, ISAV 752_09 (HPR7b), and an avirulent strain, SK779/06 (HPR0). We characterized the rescued viruses and their capacity to replicate and infect different cell lines, produce plaques in ASK cells, and their ability to induce and modulate the cellular immune response in vitro. Our results show that the majority of ISAV segments are involved in at least one of the analyzed characteristics, segment 5 being one of the most important, allowing HPR0 viruses, among other things, to produce plaques and replicate in CHSE-214 cells. We determined that segments 5 and 6 participate in different stages of the viral cycle, and their compatibility is critical for viral infection. Additionally, we demonstrated that segment 2 can modulate the cellular immune response. Our results indicate a high degree of genetic compatibility between the genomic segments of HPR7b and HPR0, representing a latent risk of reassortant that would give rise to a new virus with an unknown phenotype.
传染性鲑鱼贫血病毒(ISAV)是传染性鲑鱼贫血病的病原体。它属于正粘病毒科的 Isavirus 属,与流感病毒 A 同属一科。ISAV 基因组由 8 个负义单链 RNA 片段组成,至少编码 10 种蛋白。虽然有些 ISAV 株可达到 100%的死亡率,但决定 ISAV 感染力的因素尚不清楚。然而,一些研究表明,第 5 和第 6 片段负责 ISAV 亚型的不同毒力和感染力,而流感 A 病毒则不同,大多数片段都参与病毒感染力。在这项工作中,通过反向遗传学生成了 ISAV 的 8 个片段的合成重配病毒,该病毒结合了一种高致病性病毒 ISAV 752_09(HPR7b)和一种无致病性株 SK779/06(HPR0)。我们对拯救的病毒及其在不同细胞系中的复制和感染能力、在 ASK 细胞中产生蚀斑的能力以及在体外诱导和调节细胞免疫反应的能力进行了表征。我们的结果表明,ISAV 的大多数片段至少参与了分析的特征之一,第 5 片段是最重要的片段之一,除其他外,允许 HPR0 病毒在 CHSE-214 细胞中产生蚀斑和复制。我们确定第 5 和第 6 片段参与了病毒周期的不同阶段,它们的兼容性对于病毒感染至关重要。此外,我们证明了第 2 片段可以调节细胞免疫反应。我们的结果表明,HPR7b 和 HPR0 的基因组片段之间存在高度的遗传兼容性,这代表了重配的潜在风险,可能会产生一种具有未知表型的新病毒。