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首页> 外文期刊>BMC Genomics >RNA-Seq based transcriptome analysis during bovine viral diarrhoea virus (BVDV) infection
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RNA-Seq based transcriptome analysis during bovine viral diarrhoea virus (BVDV) infection

机译:牛病毒性腹泻病毒(BVDV)感染过程中基于RNA-Seq的转录组分析

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Bovine viral diarrhoea virus (BVDV) is the member of the genus Pestivirus within the Flaviviridae family and responsible for severe economic losses in the cattle industry. BVDV can employ ‘infect-and-persist’ strategy and ‘hit-and-run’ strategy to remain associated with hosts and thus contributes to BVDV circulation in cattle herds. BVDV have also evolved various strategies to evade the innate immunity of host. To further understand the mechanisms by which BVDV overcomes the host cell innate immune response and provide more clues for further understanding the BVDV-host interaction, in this descriptive study, we conducted a investigation of differentially expressed genes (DEGs) of the host during BVDV infection by RNA-Seq analysis. Our analysis identified 1297, 1732, 3072, and 1877 DEGs in the comparison groups mock vs. MDBK cells infected with BVDV post 2?h (MBV2h), mock vs. MBV6h, mock vs. MBV12h, and mock vs. MBV24h, respectively. The reproducibility and repeatability of the results were validated by RT-qPCR. Enrichment analyses of GO annotations and KEGG pathways revealed the host DEGs that are potentially induced by BVDV infection and may participate in BVDV-host interactions. Protein-protein interaction (PPI) network analyses identified the potential interactions among the DEGs. Our findings suggested that BVDV infection induced the upregulation of genes involved in lipid metabolism. The expression of genes that have antiviral roles, including ISG15, Mx1, OSA1Y, were found to be downregulated and are thus potentially associated with the inhibition of host innate immune system during BVDV infection. The expression levels of F3, C1R, KNG1, CLU, C3, FB, SERPINA5, SERPINE1, C1S, F2RL2, and C2, which belong to the complement and coagulation signalling cascades, were downregulated during BVDV infection, which suggested that the complement system might play a crucial role during BVDV infection. In this descriptive study, our findings revealed the changes in the host transcriptome expression profile during BVDV infection and suggested that BVDV-infection induced altering the host’s metabolic network, the inhibition of the expression of antiviral proteins and genes within the complement system might be contributed to BVDV proliferation. The above findings provided unique insights for further studies on the mechanisms underlying BVDV-host interactions.
机译:牛病毒性腹泻病毒(BVDV)是黄病毒科中瘟病毒属的成员,对牛业造成严重的经济损失。 BVDV可以采用“感染并持续”策略和“即跑即走”策略来保持与宿主的联系,从而促进BVDV在牛群中的流通。 BVDV还发展了各种策略来逃避宿主的先天免疫。为了进一步了解BVDV克服宿主细胞固有免疫反应的机制,并提供更多线索以进一步了解BVDV与宿主之间的相互作用,在此描述性研究中,我们对BVDV感染期间宿主的差异表达基因(DEG)进行了研究。通过RNA-Seq分析。我们的分析确定了比较组分别在2小时后(MBV2h),mock vs. MBV6h,mock vs. MBV12h,mock vs. MBV24h感染了BVDV的模拟组和MDBK细胞中的1297、1732、3072和1877个DEG。 RT-qPCR验证了结果的可重复性和可重复性。 GO注释和KEGG途径的富集分析揭示了可能由BVDV感染诱导并可能参与BVDV-宿主相互作用的宿主DEG。蛋白质-蛋白质相互作用(PPI)网络分析确定了DEG之间的潜在相互作用。我们的发现表明,BVDV感染可诱导参与脂质代谢的基因上调。发现具有抗病毒作用的基因(包括ISG15,Mx1,OSA1Y)的表达下调,因此可能与BVDV感染期间宿主先天免疫系统的抑制有关。属于补体和凝血信号传导级联的F3,C1R,KNG1,CLU,C3,FB,SERPINA5,SERPINE1,C1S,F2RL2和C2的表达水平在BVDV感染期间下调了,这表明补体系统可能在BVDV感染期间起着至关重要的作用。在这项描述性研究中,我们的发现揭示了BVDV感染过程中宿主转录组表达谱的变化,并表明BVDV感染诱导改变了宿主的代谢网络,抑制补体系统中抗病毒蛋白和基因的表达可能与BVDV增殖。以上发现为进一步研究BVDV-宿主相互作用的机制提供了独特的见解。

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