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中国鸭源一种新型鸭细小核糖核酸病毒的病理生物学特征

Pathobiological characterization of a novel duck picornavirus in duck in China.

作者信息

Li Jitong, Lv Junfeng, Zhu Tong, Gao Yuehua, Hu Feng, Yu Kexiang, Song Minxun, Wang Jianlin, Wei Bai, Kang Min, Li Yufeng

机构信息

College of Veterinary Medicine, Qingdao Agricultural University, Qingdao 266109, China.

Institute of Poultry Science, Shandong Academy of Agricultural Sciences/Shandong Provincial Key Laboratory of Immunity and Diagnosis of Poultry Diseases, Jinan 250100, China.

出版信息

Poult Sci. 2024 Dec;103(12):104273. doi: 10.1016/j.psj.2024.104273. Epub 2024 Sep 2.

Abstract

A novel strain of duck picornavirus was isolated from duck tissue in Taian, Shandong Province, in 2017 in our laboratory. The virus was amplified in specific-pathogen-free (SPF) chicken embryos, purified and then analyzed by whole genome sequencing, which revealed a new duck-derived small RNA virus that was designated as Duck/FC22/China/2017 (FC22, GenBank accession no. MN102111) based on its genome structure and phylogenetic relationship. An in-depth study revealed that the virus grew well on the Leghorn male hepatoma (LMH) cell line. After propagation of the virus, SPF ducks were inoculated for pathogenicity tests, and their mental state, growth and development were observed after inoculation; the ducks were dissected to observe the organs and histopathological changes. A TaqMan fluorescence quantitative PCR method was utilized to detect the proliferation and shedding patterns of the virus within the ducks, while the SYBR Green I fluorescence quantitative PCR method was used to assess cytokine expression levels in the organs. The results showed that following inoculation with the FC22 strain, the mental status of the SPF ducks remained unchanged. Mild oedema was observed in some tissue organs during dissection; however, no pathological changes, such as congestion or degeneration, were noted. Histopathological analysis revealed cellular necrosis in organs, including the heart, liver, and bursa of Fabricius, as well as a reduced volume and deep staining of certain neurons in the cerebrum. Following infection, the virus titres in various organs and in cloacal swabs of the SPF ducks peaked on the first day before gradually decreasing daily. By the 10th d, the virus titres in all organs had decreased to less than 10 copies/μL. Additionally, notable alterations were observed in the expression levels of the cytokines IFNα, IL6, IL10, and TNFα. This indicates that the FC22 strain does not cause significant disease in ducks. This report presents the initial study on a recently discovered picornavirus, offering a thorough and methodical examination of its pathogenic characteristics and provides a reference for the clinical evaluation and scientific strategies for the prevention and treatment of this particular picornavirus.

摘要

2017年,我们实验室从山东省泰安市的鸭组织中分离出一种新型鸭微小核糖核酸病毒。该病毒在无特定病原体(SPF)鸡胚中扩增、纯化,然后进行全基因组测序分析,结果显示这是一种新的源自鸭的小RNA病毒,根据其基因组结构和系统发育关系,将其命名为鸭/FC22/中国/2017(FC22,GenBank登录号:MN102111)。深入研究发现,该病毒在来航鸡雄性肝癌(LMH)细胞系上生长良好。病毒增殖后,接种SPF鸭进行致病性试验,接种后观察鸭的精神状态、生长发育情况;解剖鸭以观察器官和组织病理学变化。利用TaqMan荧光定量PCR方法检测病毒在鸭体内的增殖和排毒模式,同时采用SYBR Green I荧光定量PCR方法评估器官中细胞因子的表达水平。结果表明,接种FC22株后,SPF鸭的精神状态未发生变化。解剖时在一些组织器官中观察到轻度水肿;然而,未发现诸如充血或变性等病理变化。组织病理学分析显示,包括心脏、肝脏和法氏囊在内的器官出现细胞坏死,大脑中某些神经元体积减小且染色加深。感染后,SPF鸭各器官和泄殖腔拭子中的病毒滴度在第1天达到峰值,随后每天逐渐下降。到第10天,所有器官中的病毒滴度均降至低于10拷贝/μL。此外,细胞因子IFNα、IL6、IL10和TNFα的表达水平出现显著变化。这表明FC22株不会在鸭中引起明显疾病。本报告介绍了对最近发现的微小核糖核酸病毒的初步研究,全面系统地考察了其致病特性,为该特定微小核糖核酸病毒的临床评估及防治科学策略提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9877/11462509/8feb91a23e7a/gr1.jpg

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