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首页> 外文期刊>Journal of Veterinary Science >Phenotypic and genotypic analyses of an attenuated porcine reproductive and respiratory syndrome virus strain after serial passages in cultured porcine alveolar macrophages
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Phenotypic and genotypic analyses of an attenuated porcine reproductive and respiratory syndrome virus strain after serial passages in cultured porcine alveolar macrophages

机译:培养猪肺泡巨噬细胞串行通道后减毒猪生殖和呼吸综合征病毒菌株的表型和基因型分析

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The porcine reproductive and respiratory syndrome virus (PRRSV) is a globally ubiquitous swine viral pathogen that causes major economic losses worldwide. We previously reported an over-attenuated phenotype of cell-adapted PRRSV strain CA-2-P100 in vivo. In the present study, CA-2-P100 was serially propagated in cultured porcine alveolar macrophage (PAM) cells for up to 20 passages to obtain the derivative strain CA-2-MP120. Animal inoculation studies revealed that both CA-2-P100 and CA-2-MP120 had decreased virulence, eliciting weight gains, body temperatures, and histopathologic lesions similar to those in the negative control group. However, compared to CA-2-P100 infection, CA-2-MP120 yielded consistently higher viremia kinetics and enhanced antibody responses in pigs. All pigs inoculated with CA-2-MP120 developed viremia and seroconverted to PRRSV. During 20 passages in PAM cells, CA-2-MP120 acquired 15 amino acid changes that were mostly distributed in nsp2 and minor structural protein-coding regions. Among these changes, 6 mutations represented reversions to the sequences of the reference CA-2 and parental CA-2-P20 strains. These genetic drifts may be hypothetical molecular markers associated with PRRSV macrophage tropism and virulence. Our results indicate that the PAM-passaged CA-2-MP120 strain is a potential candidate for developing a live, attenuated PRRSV vaccine.
机译:猪生殖和呼吸综合征病毒(PRRSV)是全球普遍无处不在的猪病毒病原体,导致全世界的主要经济损失。我们之前报道了体内细胞适应PRRSV菌株CA-2-P100的过度衰减表型。在本研究中,Ca-2-P100在培养的猪肺泡巨噬细胞(PAM)细胞中串联繁殖,最多20个通道,以获得衍生菌株Ca-2-MP120。动物接种研究表明,Ca-2-P100和Ca-2-MP120的毒力减少,引发重量增益,体温和组织病理病变类似于阴性对照组的毒力和组织病理病变。然而,与CA-2-P100感染相比,CA-2-MP120始终如一的遗传血症动力学和猪中增强的抗体反应。所有接种CA-2-MP120的猪都会培养了病毒血症,并塞到了PRRSV。在PAM细胞中的20个通道期间,Ca-2-MP120获得了15个氨基酸变化,其主要分布在NSP2和次要结构蛋白质编码区中。在这些变化中,6个突变表示对参考CA-2和亲本Ca-2-P20菌株的序列的逆转。这些遗传漂移可能是与PRRSV巨噬细胞的热敏和毒力相关的假设分子标记。我们的结果表明,PAM传代的CA-2-MP120菌株是用于开发活化的PRRSV疫苗的潜在候选者。

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