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Instability of the Restriction Fragment Length Polymorphism Pattern of Open Reading Frame 5 of Porcine Reproductive and Respiratory Syndrome Virus during Sequential Pig-to-Pig Passages

机译:猪到猪的连续传代过程中猪繁殖与呼吸综合征病毒的开放阅读框5的限制性片段长度多态性模式的不稳定性

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摘要

Restriction fragment length polymorphism (RFLP) analysis is one of the tools commonly used to study the molecular epidemiology of porcine reproductive and respiratory syndrome viruses (PRRSVs). As PRRSVs are genetically variable, the stability of the RFLP pattern of a PRRSV during in vivo replication was evaluated by carrying out 13 sequential pig-to-pig passages (P1 to P13) of PRRSV ATCC VR-2332 in three independent pig lines for a total of 727 days. During P1 the pigs were inoculated with a homogeneous inoculum (CC-01) prepared through a series of plaque purifications, and during P2 to P13 the pigs were inoculated with a tissue filtrate from the corresponding pig in the previous passage. Fifteen viral plaque clones were directly isolated from CC-01 and the day 7 serum of each pig of each passage, open reading frame 5 of the clones was sequenced, and the clones were compared to CC-01 to assess the mutation rates and RFLP patterns (obtained by digestion with MluI, HincII, and SacII) over time. Among the 495 viral clones recovered during the passages, 398 clones, including CC-01, had pattern 2-5-2 (MluI-HincII-SacII); however, the remaining 97 viral clones showed different patterns (2-6-2 [P2], 1-5-2 [P3], 2-5-4 [P7], and 2-1-2 [P10]). Importantly, the MluI site that was reported to be present in only one of the PRRS modified live virus vaccine strains (Ingelvac) and its parental strain (ATCC VR-2332) can disappear during in vivo replication. Furthermore, sequence homology between CC-01 and clones with pattern 2-5-2 or clones with other patterns differed by 0.05 to 1.58% and 0.5 to 1.45%, respectively, suggesting that RFLP analysis cannot accurately predict genetic relatedness between PRRSVs. Collectively, precaution should be taken when the molecular epidemiology of PRRSVs is evaluated by RFLP analysis.
机译:限制性片段长度多态性(RFLP)分析是通常用于研究猪生殖和呼吸综合征病毒(PRRSV)分子流行病学的工具之一。由于PRRSV在遗传上是可变的,因此通过在三个独立的猪系中对PRRSV ATCC VR-2332进行13次连续的猪到猪传代(P1至P13)来评估PRRSV在体内复制过程中RFLP模式的稳定性。总共727天。在P1期间,给猪接种通过一系列噬菌斑纯化制备的均质接种物(CC-01),在P2至P13期间,给猪接种前代传代的相应猪的组织滤液。直接从CC-01中分离出15个病毒噬菌斑克隆,每代每只猪的第7天血清,对克隆的开放阅读框5进行测序,并将这些克隆与CC-01进行比较,以评估突变率和RFLP模式(通过用MluI,HincII和SacII消化获得)。在传代过程中回收的495个病毒克隆中,包括CC-01在内的398个克隆具有2-5-2模式(MluI-HincII-SacII)。但是,其余的97个病毒克隆显示出不同的模式(2-6-2 [P2],1-5-2 [P3],2-5-4 [P7]和2-1-2 [P10])。重要的是,据报道仅在PRRS修饰的活病毒疫苗株(Ingelvac)和其亲本株(ATCC VR-2332)之一中存在的MluI位点可以在体内复制过程中消失。此外,CC-01与具有2-5-2模式的克隆或具有其他模式的克隆之间的序列同源性分别相差0.05至1.58%和0.5至1.45%,这表明RFLP分析不能准确预测PRRSV之间的遗传相关性。总之,当通过RFLP分析评估PRRSV的分子流行病学时,应采取预防措施。

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