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一步法 Golden Gate 组装构建鸡传染性支气管炎病毒反向遗传系统

One-pot Golden Gate Assembly of an avian infectious bronchitis virus reverse genetics system.

机构信息

New England Biolabs, Ipswich, Massachusetts, United States of America.

The Pirbright Institute, Woking, United Kingdom.

出版信息

PLoS One. 2024 Jul 25;19(7):e0307655. doi: 10.1371/journal.pone.0307655. eCollection 2024.

Abstract

Avian infectious bronchitis is an acute respiratory disease of poultry of particular concern for global food security. Investigation of infectious bronchitis virus (IBV), the causative agent of avian infectious bronchitis, via reverse genetics enables deeper understanding of virus biology and a rapid response to emerging variants. Classic methods of reverse genetics for IBV can be time consuming, rely on recombination for the introduction of mutations, and, depending on the system, can be subject to genome instability and unreliable success rates. In this study, we have applied data-optimized Golden Gate Assembly design to create a rapidly executable, flexible, and faithful reverse genetics system for IBV. The IBV genome was divided into 12 fragments at high-fidelity fusion site breakpoints. All fragments were synthetically produced and propagated in E. coli plasmids, amenable to standard molecular biology techniques for DNA manipulation. The assembly can be carried out in a single reaction, with the products used directly in subsequent viral rescue steps. We demonstrate the use of this system for generation of point mutants and gene replacements. This Golden Gate Assembly-based reverse genetics system will enable rapid response to emerging variants of IBV, particularly important to vaccine development for controlling spread within poultry populations.

摘要

禽传染性支气管炎是一种家禽的急性呼吸道疾病,对全球食品安全尤为关注。通过反向遗传学研究传染性支气管炎病毒(IBV),即禽传染性支气管炎的病原体,可以更深入地了解病毒生物学,并对新出现的变异病毒快速做出反应。IBV 的经典反向遗传学方法耗时较长,依赖重组来引入突变,并且根据系统的不同,可能会导致基因组不稳定和不可靠的成功率。在这项研究中,我们应用了数据优化的 Golden Gate 组装设计,为 IBV 创建了一个快速执行、灵活且忠实的反向遗传学系统。将 IBV 基因组分为 12 个片段,在高保真融合位点断点处进行分割。所有片段均通过合成产生,并在大肠杆菌质粒中进行繁殖,这有利于进行标准的分子生物学技术进行 DNA 操作。组装可以在单个反应中进行,产物可直接用于后续的病毒拯救步骤。我们展示了该系统在生成点突变和基因替换方面的应用。这种基于 Golden Gate 组装的反向遗传学系统将能够快速应对 IBV 的新出现变异株,这对于控制家禽种群内传播的疫苗开发尤为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1860/11271894/3f9c027e9437/pone.0307655.g001.jpg

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