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肠道微生物群促进小鼠感染牛病毒性腹泻病毒。

The gut microbiota contributes to the infection of bovine viral diarrhea virus in mice.

作者信息

Zhang Zecai, Huang Jiang, Li Chuang, Zhao Zhicheng, Cui Yueqi, Yuan Xueying, Wang Xue, Liu Yu, Zhou Yulong, Zhu Zhanbo

机构信息

College of Animal Science and Veterinary Medicine, Heilongjiang Bayi Agricultural University, Daqing, China.

Key Laboratory of Bovine Disease Control in Northeast China, Ministry of Agriculture and Rural affairs, Daqing, China.

出版信息

J Virol. 2024 Feb 20;98(2):e0203523. doi: 10.1128/jvi.02035-23. Epub 2024 Feb 1.

Abstract

Bovine viral diarrhea virus (BVDV) is prevalent worldwide and causes significant economic losses. Gut microbiota is a large microbial community and has a variety of biological functions. However, whether there is a correlation between gut microbiota and BVDV infection and what kind of relation between them have not been reported. Here, we found that gut microbiota composition changed in normal mice after infecting with BVDV, but mainly the low abundance microbe was affected. Interestingly, BVDV infection significantly reduced the diversity of gut microbiota and changed its composition in gut microbiota-dysbiosis mice. Furthermore, compared with normal mice of BVDV infection, there were more viral loads in the duodenum, jejunum, spleen, and liver of the gut microbiota-dysbiosis mice. However, feces microbiota transplantation (FMT) reversed these effects. The data above indicated that the dysbiosis of gut microbiota was a key factor in the high infection rate of BVDV. It is found that the IFN-I signal was involved by investigating the underlying mechanisms. The inhibition of the proliferation and increase in the apoptosis of peripheral blood lymphocytes (PBL) were also observed. However, FMT treatment reversed these changes by regulating PI3K/Akt, ERK, and Caspase-9/Caspase-3 pathways. Furthermore, the involvement of butyrate in the pathogenesis of BVDV was also further confirmed. Our results showed for the first time that gut microbiota acts as a key endogenous defense mechanism against BVDV infection; moreover, targeting regulation of gut microbiota structure and abundance may serve as a new strategy to prevent and control the disease.IMPORTANCEWhether the high infection rate of BVDV is related to gut microbiota has not been reported. In addition, most studies on BVDV focus on experiments, which limits the study of its prevention and control strategy and its pathogenic mechanism. In this study, we successfully confirmed the causal relationship between gut microbiota and BVDV infection as well as the potential molecular mechanism based on a mouse model of BVDV infection and a mouse model of gut microbiota dysbiosis. Meanwhile, a mouse model which is more susceptible to BVDV provided in this study lays an important foundation for further research on prevention and control strategy of BVDV and its pathogenesis. In addition, the antiviral effect of butyrate, the metabolites of butyrate-producing bacteria, has been further revealed. Overall, our findings provide a promising prevention and control strategy to treat this infectious disease which is distributed worldwide.

摘要

牛病毒性腹泻病毒(BVDV)在全球范围内广泛流行,并造成重大经济损失。肠道微生物群是一个庞大的微生物群落,具有多种生物学功能。然而,肠道微生物群与BVDV感染之间是否存在相关性以及它们之间存在何种关系尚未见报道。在此,我们发现感染BVDV后正常小鼠的肠道微生物群组成发生了变化,但主要是低丰度微生物受到影响。有趣的是,BVDV感染显著降低了肠道微生物群失调小鼠肠道微生物群的多样性并改变了其组成。此外,与感染BVDV的正常小鼠相比,肠道微生物群失调小鼠的十二指肠、空肠、脾脏和肝脏中的病毒载量更高。然而,粪便微生物群移植(FMT)逆转了这些影响。上述数据表明肠道微生物群失调是BVDV高感染率的关键因素。通过研究潜在机制发现干扰素-I信号参与其中。还观察到外周血淋巴细胞(PBL)增殖受到抑制且凋亡增加。然而,FMT治疗通过调节PI3K/Akt、ERK和Caspase-9/Caspase-3信号通路逆转了这些变化。此外,还进一步证实了丁酸盐参与BVDV的发病机制。我们的结果首次表明肠道微生物群是抵御BVDV感染的关键内源性防御机制;此外,靶向调节肠道微生物群的结构和丰度可能成为预防和控制该疾病的新策略。

重要性

BVDV的高感染率是否与肠道微生物群有关尚未见报道。此外,大多数关于BVDV的研究集中在实验上,这限制了其预防控制策略和致病机制的研究。在本研究中,我们基于BVDV感染小鼠模型和肠道微生物群失调小鼠模型成功证实了肠道微生物群与BVDV感染之间的因果关系以及潜在的分子机制。同时,本研究提供的对BVDV更易感的小鼠模型为进一步研究BVDV的预防控制策略及其发病机制奠定了重要基础。此外,还进一步揭示了丁酸盐产生菌的代谢产物丁酸盐的抗病毒作用。总体而言,我们的研究结果为治疗这种在全球范围内传播的传染病提供了一种有前景的预防控制策略。

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