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Expression of microRNAs and interferon-related genes in rainbow trout (Oncorhynchus mykiss Walbaum) infected with Viral hemorrhagic septicemia virus

机译:感染病毒性出血性败血症病毒的虹鳟(Oncorhynchus mykiss Walbaum)中microRNa和干扰素相关基因的表达

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摘要

The fish rhabdovirus Viral hemorrhagic septicemia virus (VHSV) causes severe disease in farmed rainbow trout (Oncorhynchus mykiss). The potential threat from wildlife marine reservoir of VHSV, particularly to sea-farmed fish demands disease protection measures. Identification of biomarkers during infection is important to understand the complex web of interactions involved in the underlying host immune response, which is a requisite to developing effective disease control strategies. MicroRNAs potently mediate post-transcriptional silencing of a broad range of genes by the RNA interference mechanism and have been shown to regulate cellular processes, including immune responses. A microarray experiment in our lab revealed that a number of miRNAs were upregulated in fish liver following VHSV infection. Here, we validated the expression of the miRNAs and analyzed for associated expression of interferon (IFN)-related genes in the liver of VHSV-infected fish. Quantitative RT-PCR verified positive regulation for most of the miRNAs shown to be upregulated by our microarray analysis. Of these, miR-155, miR-462, and miR-731 had the highest expression levels. The increased expression of these miRNAs in infected liver correlated with the upregulation of type I IFN and the type I IFN-inducible Mx and Vig-1 genes, as well as that of IFN-gamma, indicating activation of both general anti-viral IFN response and natural killer cell and/or T cell responses. Further analysis of the expression of the three most highly upregulated miRNAs in fish intramuscularly injected with a type I IFN construct and the general IFN stimulator and TLR-3 agonist, poly I:C showed increased expression of miR-155, miR-462, and miR-731, as well as Mx at the site of injection relative to controls. This suggests that the increased levels of the three miRNAs at the site of administration is associated with type I interferons, which besides their anti-viral effects are known to have major immune regulatory roles in mammals. Besides adding to our understanding of anti-viral immunity, response profiles of miRNAs could serve as molecular signatures of responses to infection. In the future we plan to analyze whether individual variability is associated with differences in disease susceptibility.
机译:鱼弹状病毒病毒性败血病病毒(VHSV)在养殖的虹鳟鱼(Oncorhynchus mykiss)中引起严重疾病。 VHSV野生动植物海洋水库的潜在威胁,特别是对海养鱼类的潜在威胁,要求采取疾病预防措施。感染期间生物标志物的鉴定对于了解潜在宿主免疫反应中复杂的相互作用网络非常重要,这是制定有效疾病控制策略的必要条件。 MicroRNA通过RNA干扰机制有效介导多种基因的转录后沉默,并且已被证明可调节细胞过程,包括免疫应答。我们实验室的微阵列实验显示,VHSV感染后,鱼肝中许多miRNA上调。在这里,我们验证了miRNA的表达,并分析了VHSV感染鱼肝脏中干扰素(IFN)相关基因的相关表达。定量RT-PCR验证了通过我们的微阵列分析显示大多数上调的大多数miRNA的阳性调控。其中,miR-155,miR-462和miR-731的表达水平最高。这些miRNA在感染肝脏中的表达增加与I型IFN和I型IFN诱导的Mx和Vig-1基因以及IFN-γ的表达上调相关,表明一般抗病毒IFN应答均被激活和自然杀伤细胞和/或T细胞反应。进一步分析了肌肉注射I型IFN构建体,一般IFN刺激剂和TLR-3激动剂poly I:C的鱼中三种高度上调的miRNA的表达,结果表明miR-155,miR-462和miR-731以及相对于对照的注射部位的Mx。这表明给药部位三种miRNA的水平升高与I型干扰素有关,I型干扰素除具有抗病毒作用外,在哺乳动物中还具有重要的免疫调节作用。除了增加我们对抗病毒免疫的理解外,miRNA的应答谱还可以作为对感染应答的分子标记。将来,我们计划分析个体变异性是否与疾病易感性差异相关。

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