首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >Origin and characteristics of the recombinant novel avian infectious bronchitis coronavirus isolate ck/CH/LJL/111054
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Origin and characteristics of the recombinant novel avian infectious bronchitis coronavirus isolate ck/CH/LJL/111054

机译:重组新型禽传染性支气管炎冠状病毒分离株ck / CH / LJL / 111054的起源和特征

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摘要

Recombination among infectious bronchitis viruses (IBVs), coupled with point mutations, insertions, and deletions that occur in the genome, is thought to contribute to the emergence of new IBV variants. In this study an IBV, ck/CH/LJL/111054, was isolated from a H120-vaccinated chicken, which presented with a suspected IBV infection. Phylogenetic analysis of the S1 subunit sequence confirmed that strain ck/CH/LJL/111054 is of the Connecticut-type; however, further extensive full-length genomic analysis identified the occurrence of recombination events. Therefore, strain ck/CH/LJL/111054 may have originated from recombination events between Conn- and Mass-like strains at three recombination breakpoints: two located within the nsp3 gene sequence and one in the nsp12 gene sequence. Further, the uptake of the 5 ' untranslated regions, nsp2, parts of nsp3, nsp4-11, and parts of nsp 12 from Mass-like virus by ck/ CH/LJL/111054 might have resulted in changes in viral replication efficiency rather than antigenic changes, via cross-neutralization analysis with the H120 strain. Recombination events coupled with the accumulation of mutations in the ck/CH/LJL/111054 genome may account for its increased virulence in specific-pathogen free chickens
机译:传染性支气管炎病毒(IBV)之间的重组与基因组中发生的点突变,插入和缺失相结合,被认为有助于新的IBV变异体的出现。在这项研究中,从H120疫苗接种鸡中分离出IBV,即ck / CH / LJL / 111054,该鸡表现出IBV感染。对S1亚基序列的系统进化分析证实菌株ck / CH / LJL / 111054属于康涅狄格型。然而,进一步广泛的全长基因组分析确定了重组事件的发生。因此,菌株ck / CH / LJL / 111054可能起源于Conn样和Mass样菌株之间三个重组断裂点的重组事件:两个位于nsp3基因序列内,一个位于nsp12基因序列内。此外,ck / CH / LJL / 111054从Mass-like病毒摄取5'非翻译区nsp2,nsp3,nsp4-11的部分和nsp 12的部分可能会导致病毒复制效率的改变,而不是抗原变化,通过与H120菌株的交叉中和分析进行。重组事件以及ck / CH / LJL / 111054基因组中突变的积累可能解释了其在无特定病原体鸡中的毒力增加

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