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Using DNA Shuffling to Create Novel Infectious Bronchitis Virus S1 Genes: Implications for S1 Gene Recombination

机译:使用DNA重排创建新的传染性支气管炎病毒S1基因:对S1基因重组的影响。

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摘要

We employed the staggered extension process (StEP) to shuffle the S1 genes from four infectious bronchitis virus (IBV) strains representing four unique serotypes. Upon creating a shuffled S1 gene library, we randomly selected 25 clones and analyzed them by DNA sequencing. In total, eleven clones contained novel S1 gene recombinants. Based on sequence data, each recombinant was unique and contained a full-length open reading frame. The average number of crossovers per recombinant was 5 and the average number of point mutations was 1.3, leading mostly to non-synonymous amino acid changes. No recombinant contained sequences from all four parental genes and no recombinant contained any sequence from the distantly related Delaware 072 strain. Our data suggests that recombination between distantly related IBV strains within the S1 gene probably does not readily occur. This finding is extremely important in light of the common industry vaccination practice of mixing different live-attenuated IBV strains.
机译:我们采用交错扩展过程(StEP)从代表四种独特血清型的四种传染性支气管炎病毒(IBV)菌株中改组S1基因。创建改组的S1基因库后,我们随机选择了25个克隆,并通过DNA测序对其进行了分析。总共有11个克隆包含新的S1基因重组体。根据序列数据,每个重组体都是独特的,并包含一个全长的开放阅读框。每个重组体的平均交换数为5,平均点突变数为1.3,主要导致非同义氨基酸变化。没有重组体包含来自所有四个亲本基因的序列,并且重组体不包含来自遥远相关的Delaware 072菌株的任何序列。我们的数据表明,S1基因内远距离相关的IBV株之间的重组可能不容易发生。根据混合不同的减毒活疫苗的普通工业疫苗接种实践,这一发现非常重要。

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