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Comparative genomic analysis of five pairs of virulent parental/attenuated vaccine strains of PRRSV

机译:五对PRRSV亲本/减毒强毒疫苗株的基因组比较分析

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Porcine reproductive and respiratory syndrome virus (PRRSV), the causative agent of porcine reproductive and respiratory syndrome, is responsible for serious disease in pigs resulting in substantial economic losses in the porcine industry. An attenuated vaccine strain, HuN4-F112, was obtained by passaging virulent PRRSV strain HuN4 on Marc-145 cells (for 112 passages), and the full-genomic sequence was determined. To understand the molecular basis of attenuation of PRRSV, we compared and analyzed the genomic sequences of HuN4/HuN4-F112, together with those of other four virulent parental/attenuated vaccine strains. Among the 19 PRRSV proteins, two (NSP6 and NSP8) were highly conserved, without any mutations and considered irrelative to attenuation. The mutation rates of envelope-associated structural proteins were obviously higher than those of most non-structural proteins. It is interesting that the gene of the smallest structural protein, E protein, had the highest mutation rate among all of the structural genes analyzed, and also harbored a highly variable region. Our results indicate that determinants of PRRSV attenuation are multigenic products of both non-structural and structural genes. To our knowledge, this is the first report showing that the envelope-associated structural proteins (including E and GP2-GP5 proteins) may play a significant role. These findings contribute towards our understanding of PRRSV attenuation and will provide an important clue for further study
机译:猪繁殖与呼吸综合症病毒(PRRSV)是猪繁殖与呼吸综合症的病原体,是造成猪严重疾病的原因,在猪产业造成了巨大的经济损失。通过在Marc-145细胞上传代强毒PRRSV株HuN4(112传代)获得减毒的疫苗株HuN4-F112,并确定了全基因组序列。为了了解PRRSV减毒的分子基础,我们比较和分析了HuN4 / HuN4-F112的基因组序列,以及其他四个有毒的亲本/减毒疫苗株的基因组序列。在19种PRRSV蛋白中,有2种(NSP6和NSP8)是高度保守的,没有任何突变,被认为与减毒无关。包膜相关结构蛋白的突变率明显高于大多数非结构蛋白。有趣的是,在所有分析的结构基因中,最小的结构蛋白E基因的突变率最高,并且还具有高度可变的区域。我们的结果表明,PRRSV减毒的决定因素是非结构和结构基因的多基因产物。据我们所知,这是第一个报告,表明与包膜相关的结构蛋白(包括E和GP2-GP5蛋白)可能起重要作用。这些发现有助于我们对PRRSV衰减的理解,并将为进一步研究提供重要线索。

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