基于全长感染性克隆的反向遗传系统制备人工减毒禽腺病毒4型病毒载体。

IF 3.7 1区 农林科学 Q1 VETERINARY SCIENCES
Zhihui Tang, Dengfei Feng, Wentao Fan, Liping Yan, Suquan Song
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引用次数: 0

摘要

禽腺病毒血清型4 (FAdV-4)是一种非包膜双链DNA病毒,基因组长度为43- 45kb。这一特性使其成为家禽业开发多价或多系列疫苗时表达其他抗原的有希望的病毒载体。为了建立一个易于操作的FAdV-4基因组DNA的反向遗传系统,利用lambda red介导的重组在大肠杆菌DH10B中构建了FAdV-4全长感染性克隆。将线性化的传染性克隆转染到LMH细胞后,成功地挽救了活病毒。救出的病毒表现出与野生型FAdV-4病毒相同的细胞病变效应和生长动力学。以FAdV-4感染性克隆为基础,采用lambda - red介导重组结合rpsL反选择的方法,在不留下多余序列的情况下,将高致病性FAdV-4的六联体编码序列替换为非致病性FAdV-4。救出的重组病毒高度减毒,对21日龄SPF鸡具有低致病性。由此,成功建立了易于操作的FAdV-4反向遗传系统。利用该平台,可以在DH10B中操纵和纯化FAdV-4的基因组DNA,从而更快、更容易地生成重组FAdV-4病毒,从而开发多价/多系列疫苗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Generation of an artificially attenuated fowl adenovirus 4 viral vector using the reverse genetics system based on full-length infectious clone.

Fowl adenovirus serotype 4 (FAdV-4) is a non-enveloped double-stranded DNA virus with a 43-45 kb genome. This characteristic makes it a promising viral vector for expressing other antigens in developing multi-valent or multi-series vaccines in the poultry industry. To create an easy-to-use reverse genetics system for manipulating FAdV-4 genomic DNA, a full-length infectious clone of FAdV-4 was constructed using lambda Red-mediated recombination in Escherichia coli DH10B. Viable viruses were successfully rescued after the transfection of linearised infectious clones into LMH cells. The rescued viruses showed the same cytopathic effect and growth kinetics as wild-type FAdV-4 viruses. Based on the FAdV-4 infectious clone, the hexon coding sequence of the high-pathogenicity FAdV-4 was replaced by that of the nonpathogenic FAdV-4 using lambda Red-mediated recombination combined with rpsL counter selection without leaving extra sequences after engineering. The rescued recombinant virus was highly attenuated and showed low pathogenicity to 21-day-old SPF chickens. Hereto, the easy-to-use reverse genetics system for FAdV-4 was successfully established. With this platform, the genomic DNA of FAdV-4 can be manipulated and purified in DH10B, making it quicker and easier to generate a recombinant FAdV-4 virus to develop multi-valent/multi-series vaccines.

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来源期刊
Veterinary Research
Veterinary Research 农林科学-兽医学
CiteScore
7.00
自引率
4.50%
发文量
92
审稿时长
3 months
期刊介绍: Veterinary Research is an open access journal that publishes high quality and novel research and review articles focusing on all aspects of infectious diseases and host-pathogen interaction in animals.
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