Instituto de Virología, Centro de Investigaciones en Ciencias Veterinarias y Agronómicas (CICVyA), Instituto de tecnología Agropecuaria (INTA), N. Repetto y Los Reseros S/N, CC25, B1712WAA, Castelar, Buenos Aires, Argentina; Consejo Nacional de Investigaciones Científicas y Tecnológicas (CONICET), Rivadavia 1917 (C1033AAJ), Ciudad Autónoma de Buenos Aires, Argentina; Cátedra de Inmunogenética, Facultad de Ciencias exactas, Químicas y Naturales, Universidad de Morón, Cabildo 134 (B1708JPD) Morón, Buenos Aires, Argentina.
Instituto de Química Biológica de la Facultad de Ciencias Exactas y Naturales (IQUIBICEN-UBA/CONICET) y Departamento de Química Biológica, FCEN, UBA, Argentina.
Virus Res. 2017 Oct 15;242:122-130. doi: 10.1016/j.virusres.2017.09.018. Epub 2017 Sep 28.
Closely related bovine alphaherpesviruses 1 (BoHV-1) and 5 (BoHV-5) co-circulate in certain countries, rendering cattle co-infection possible. This is a prerequisite for BoHV recombination. Here, we report the first identification of homologous recombination between field isolates of BoHV-1 and BoHV-5, two alphaherpesviruses belonging to two distinct species with an average genomic similarity of 82.3%. Three isolates of BoHV-5, previously classified as subtype "BoHV-5b", were phylogenetically studied and analyzed via eight PCR sequencing assays dispersed at regular intervals throughout the genome to discriminate between BoHV-1 and BoHV-5. In the phylogenetic analysis, differences of clustering were found in the UL27 gene which encodes the glycoprotein B (gB). We detected two recombination breakpoints in the open reading frame of the UL27 gene. We compared the amino acid sequences of the gB of BoHV-1.1 and 1.2, BoHV-5a and recombinant formerly named BoHV-5b (chimeric gB) and subsequently performed molecular modeling. All structures were alike and, simultaneously, similar to the chimeric gB. Neutralizing antibodies against BoHV-1, BoHV-5 and recombinant viruses were analyzed via serum virus neutralization test using polyclonal sera and a monoclonal antibody against gB to demonstrate an absence of viral escape for both assays. Our results show that homologous recombination between two related species of ruminant alphaherpesviruses can occur in natural field conditions. We found three recombinant field isolates, previously classified as BoHV-5b subtypes, between BoHV-1 and BoHV-5.
密切相关的牛α疱疹病毒 1(BoHV-1)和 5(BoHV-5)在某些国家共同循环,使牛可能同时感染两种病毒。这是 BoHV 重组的前提条件。在这里,我们报告了首次在 BoHV-1 和 BoHV-5 的田间分离株之间发现同源重组,BoHV-1 和 BoHV-5 是两种属于两个不同种的α疱疹病毒,基因组相似度平均为 82.3%。三个先前被归类为 BoHV-5b 亚型的 BoHV-5 分离株进行了系统发育研究,并通过 8 个 PCR 测序分析进行了分析,这些分析分散在基因组的各个位置,以区分 BoHV-1 和 BoHV-5。在系统发育分析中,发现 UL27 基因(编码糖蛋白 B(gB)的基因)聚类存在差异。我们在 UL27 基因的开放阅读框中检测到两个重组断点。我们比较了 BoHV-1.1 和 1.2、BoHV-5a 和重组病毒(以前称为 BoHV-5b,嵌合 gB)的 gB 氨基酸序列,并进行了分子建模。所有结构相似,同时与嵌合 gB 相似。通过血清病毒中和试验,使用多克隆血清和针对 gB 的单克隆抗体分析针对 BoHV-1、BoHV-5 和重组病毒的中和抗体,以证明两种试验均未发生病毒逃逸。我们的结果表明,两种相关的反刍动物α疱疹病毒在自然田间条件下可以发生同源重组。我们发现了三个重组田间分离株,它们介于 BoHV-1 和 BoHV-5 之间,以前被归类为 BoHV-5b 亚型。