Plum Island Animal Disease Center, USDA, Agricultural Research Service, Orient, NY 11944, USA.
Department of Pathobiology and Population Medicine, Mississippi State University, Starkville, MS 39762, USA.
Viruses. 2021 Dec 21;14(1):10. doi: 10.3390/v14010010.
African swine fever virus (ASFV) is producing a devastating pandemic that, since 2007, has spread to a contiguous geographical area from central Europe to Asia. In July 2021, ASFV was detected in the Dominican Republic, the first report of the disease in the Americas in more than 40 years. ASFV is a large, highly complex virus harboring a large dsDNA genome that encodes for more than 150 genes. The majority of these genes have not been functionally characterized. Bioinformatics analysis predicts that ASFV gene A859L encodes for an RNA helicase, although its function has not yet been experimentally assessed. Here, we evaluated the role of the A859L gene during virus replication in cell cultures and during infection in swine. For that purpose, a recombinant virus (ASFV-G-∆A859L) harboring a deletion of the A859L gene was developed using the highly virulent ASFV Georgia (ASFV-G) isolate as a template. Recombinant ASFV-G-∆A859L replicates in swine macrophage cultures as efficiently as the parental virus ASFV-G, demonstrating that the A859L gene is non-essential for ASFV replication. Experimental infection of domestic pigs demonstrated that ASFV-G-∆A859L replicates as efficiently and induces a clinical disease indistinguishable from that caused by the parental ASFV-G. These studies conclude that the predicted RNA helicase gene A859L is not involved in the processes of virus replication or disease production in swine.
非洲猪瘟病毒(ASFV)正在引发一场毁灭性的大流行,自 2007 年以来,它从中欧蔓延到亚洲的连续地理区域。2021 年 7 月,ASFV 在多米尼加共和国被检测到,这是该病毒在 40 多年来首次在美洲出现。ASFV 是一种大型、高度复杂的病毒,拥有一个大型 dsDNA 基因组,编码超过 150 个基因。这些基因中的大多数尚未进行功能表征。生物信息学分析预测,ASFV 基因 A859L 编码 RNA 解旋酶,尽管其功能尚未经过实验评估。在这里,我们评估了 A859L 基因在细胞培养中的病毒复制过程中和在猪感染过程中的作用。为此,我们使用高致病性 ASFV 格鲁吉亚(ASFV-G)分离株作为模板,开发了一种携带 A859L 基因缺失的重组病毒(ASFV-G-∆A859L)。重组 ASFV-G-∆A859L 在猪巨噬细胞培养物中的复制效率与亲本病毒 ASFV-G 一样高,表明 A859L 基因对 ASFV 复制不是必需的。对家猪的实验感染表明,ASFV-G-∆A859L 的复制效率和诱导的临床疾病与亲本 ASFV-G 引起的疾病相同。这些研究得出结论,预测的 RNA 解旋酶基因 A859L 不参与病毒复制或猪病产生的过程。