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Integrated Lung and Tracheal mRNA-Seq and miRNA-Seq Analysis of Dogs with an Avian-Like H5N1 Canine Influenza Virus Infection

机译:犬类H5N1犬流感病毒感染犬的肺和气管mRNA-Seq和miRNA-Seq整合分析

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摘要

Avian-like H5N1 canine influenza virus (CIV) causes severe respiratory infections in dogs. However, the mechanism underlying H5N1 CIV infection in dogs is unknown. The present study aimed to identify differentially expressed miRNAs and mRNAs in the lungs and trachea in H5N1 CIV-infected dogs through a next-generation sequencing-based method. Eighteen 40-day-old beagles were inoculated intranasally with CIV, A/canine/01/Guangdong/2013 (H5N1) at a tissue culture infectious dose 50 (TCID50) of 106, and lung and tracheal tissues were harvested at 3 and 7 d post-inoculation. The tissues were processed for miRNA and mRNA analysis. By means of miRNA-gene expression integrative negative analysis, we found miRNA–mRNA pairs. Lung and trachea tissues showed 138 and 135 negative miRNA–mRNA pairs, respectively. One hundred and twenty negative miRNA–mRNA pairs were found between the different tissues. In particular, pathways including the influenza A pathway, chemokine signaling pathways, and the PI3K-Akt signaling pathway were significantly enriched in all groups in responses to virus infection. Furthermore, dysregulation of miRNA and mRNA expression was observed in the respiratory tract of H5N1 CIV-infected dogs and notably, TLR4 (miR-146), NF-κB (miR-34c) and CCL5 (miR-335), CCL10 (miR-8908-5p), and GNGT2 (miR-122) were found to play important roles in regulating pathways that resist virus infection. To our knowledge, the present study is the first to analyze miRNA and mRNA expression in H5N1 CIV-infected dogs; furthermore, the present findings provide insights into the molecular mechanisms underlying influenza virus infection.
机译:禽样H5N1犬流感病毒(CIV)导致犬严重呼吸道感染。但是,尚不清楚犬中H5N1 CIV感染的潜在机制。本研究旨在通过基于下一代测序的方法鉴定H5N1 CIV感染狗的肺和气管中差异表达的miRNA和mRNA。鼻内接种18只40日龄的小猎犬CIV,A / canine / 01 / Guangdong / 2013(H5N1),其组织培养感染剂量50(TCID50)为10 6 ,肺和气管接种后3和7天收集组织。处理组织用于miRNA和mRNA分析。通过对miRNA基因表达进行整合阴性分析,我们发现了miRNA–mRNA对。肺和气管组织分别显示138和135个阴性的miRNA-mRNA对。在不同组织之间发现了120个阴性的miRNA-mRNA对。特别地,包括A型流感途径,趋化因子信号传导途径和PI3K-Akt信号传导途径在内的途径在对病毒感染的响应中在所有组中均显着丰富。此外,在感染H5N1 CIV的狗的呼吸道中观察到miRNA和mRNA表达失调,尤其是TLR4(miR-146),NF-κB(miR-34c)和CCL5(miR-335),CCL10(miR- 8908-5p)和GNGT2(miR-122)在调节抵抗病毒感染的途径中起着重要作用。据我们所知,本研究是第一个分析H5N1 CIV感染狗中miRNA和mRNA表达的研究。此外,本发现提供了对流行性感冒病毒感染的分子机制的见解。

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