首页> 外文OA文献 >Analysis of ORF5 and Full-Length Genome Sequences of Porcine Reproductive and Respiratory Syndrome Virus Isolates of Genotypes 1 and 2 Retrieved Worldwide Provides Evidence that Recombination Is a Common Phenomenon and May Produce Mosaic Isolates
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Analysis of ORF5 and Full-Length Genome Sequences of Porcine Reproductive and Respiratory Syndrome Virus Isolates of Genotypes 1 and 2 Retrieved Worldwide Provides Evidence that Recombination Is a Common Phenomenon and May Produce Mosaic Isolates

机译:猪繁殖与呼吸综合征的ORF5和全长基因组序列的分析全世界检索到的基因型1和2的病毒分离株提供重组是常见现象并可能产生镶嵌分离物的证据

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摘要

Recombination is currently recognized as a factor for high genetic diversity, but the frequency of such recombination events and the genome segments involved are not well known. In the present study, we initially focused on the detection of recombinant porcine reproductive and respiratory syndrome virus (PRRSV) isolates by examining previously published data sets of ORF5 sequences (genotypes 1 and 2) obtained worldwide. We then examined full-length genome sequences in order to determine potential recombination breakpoints along the viral genome. For ORF5, 11 sets of genotype 1 sequences from different geographical areas, including 2 Asian, 1 American, and 7 European regions, and three sets of genotype 2, including sets from China, Mexico, and the United States, were analyzed separately. Potential recombination breakpoints were detected in 10/11 genotype 1 sets, including 9 cases in which the clustering of at least one isolate was different before and after the breakpoints. In genotype 2, potential breakpoints and different tree clustering of at least one strain before and after the breakpoint were observed in 2 out of 3 sets. The results indicated that most of the ORF5 data sets contained at least one recombinant sequence. When the full-length genome sequences were examined, both genotype 1 and 2 sets presented breakpoints (10 and 9, respectively), resulting in significantly different topologies before and after the breakpoints. Mosaic genomes were detected in genotype 1 sequences. These results may have significant implications for the understanding of the molecular epidemiology of PRRSV. IMPORTANCE PRRSV is one of the most important viruses affecting swine production worldwide, causing big economic losses and sanitary problems. One of the key questions on PRRSV arises from its genetic diversity, which is thought to have a direct impact on immunobiology, epidemiology, diagnosis, and vaccine efficacy. One of the causes of this genetic diversity is recombination among strains. This study provides evidence that recombinant PRRSV isolates are common in most of the countries with significant swine production, especially PRRSV genotype 1. This observation has implications in the proper characterization of PRRSV strains, in the future development of phylogenetic studies, and in the development of new PRRSV control strategies. Moreover, the present paper emphasizes the need for a deeper understanding of the mechanisms and circumstances involved in the generation of genetic diversity of PRRSV.
机译:重组目前被认为是高遗传多样性的一个因素,但是这种重组事件的发生频率和涉及的基因组片段尚不清楚。在本研究中,我们首先通过检查先前在世界范围内获得的ORF5序列(基因型1和2)的数据集,着重研究重组猪繁殖与呼吸综合征病毒(PRRSV)分离株。然后,我们检查了全长基因组序列,以确定沿病毒基因组的潜在重组断裂点。对于ORF5,分别分析了11个来自不同地理区域的基因型1序列,包括2个亚洲,1个美洲和7个欧洲地区,以及3个基因型2集,包括来自中国,墨西哥和美国的3个基因组。在10/11基因型1组中检测到潜在的重组断裂点,包括9个病例,其中至少一个分离物的聚类在断裂点前后均不同。在基因型2中,在3组中的2组中观察到了潜在断裂点和断裂点前后至少一种菌株的不同树簇。结果表明大多数ORF5数据集包含至少一个重组序列。当检查全长基因组序列时,基因型1和基因组2都出现断点(分别为10和9),导致断点前后的拓扑显着不同。在基因型1序列中检测到马赛克基因组。这些结果可能对PRRSV分子流行病学的理解有重要意义。重要信息PRRSV是影响全球猪生产的最重要的病毒之一,造成巨大的经济损失和卫生问题。 PRRSV的关键问题之一来自其遗传多样性,据认为这对免疫生物学,流行病学,诊断和疫苗功效具有直接影响。这种遗传多样性的原因之一是菌株之间的重组。这项研究提供了证据,表明重组PRRSV分离株在大多数猪产量显着的国家中很常见,尤其是PRRSV基因型1。该观察结果对PRRSV毒株的正确鉴定,系统发育研究的未来发展以及对PRRSV菌株的发展有影响。新的PRRSV控制策略。此外,本文强调有必要对PRRSV遗传多样性的产生所涉及的机制和情况有更深入的了解。

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