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首页> 外文期刊>Fish & Shellfish Immunology >Characterization of microRNAs by deep sequencing in red claw crayfish Cherax quadricarinatus haematopoietic tissue cells after white spot syndrome virus infection
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Characterization of microRNAs by deep sequencing in red claw crayfish Cherax quadricarinatus haematopoietic tissue cells after white spot syndrome virus infection

机译:白点症候群病毒感染后红爪小龙虾Cherax quadricarinatus造血组织细胞中的深度测序表征microRNA

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摘要

White spot syndrome virus (WSSV) is one of the most prevalent and widespread viruses in both shrimp and crayfish aquaculture. MicroRNAs (miRNAs) are crucial post-transcriptional regulators and play critical roles in cell differentiation and proliferation, apoptosis, signal transduction and immunity. In this study, miRNA expression profiles were identified via deep sequencing in red claw crayfish Cherax quadricarinatus haematopoietic tissue (Hpt) cell cultures infected with WSSV at both early (i.e., 1 hpi) and late (i.e., 12 hpi) infection stages. The results showed that 2 known miRNAs, namely, miR-7 and miR-184 play key roles in immunity. Meanwhile, 106 novel miRNA candidates were predicted by software in these combined miRNA transcriptomes. Compared with two control groups, 36 miRNAs showed significantly different expression levels after WSSV challenge. Furthermore, 10 differentially expressed miRNAs in WSSV-exposed Hpt cells were randomly selected for expression analysis by quantitative real-time RTPCR. Consistent with the expression profiles identified by deep sequencing, RT-PCR showed a significant increase or decrease in miRNA expression in Hpt cells after WSSV infection. Prediction of targets of miRNAs such as miR-7, cqu-miR-52, cqu-miR-126 and cqu-miR-141 revealed that their target genes have diverse biological roles, including not only immunity but also transcriptional regulation, energy metabolism, cell communication, cell differentiation, cell death, autophagy, endocytosis and apoptosis. These results provide insight into the molecular mechanism of WSSV infection and highlight the function of miRNAs in the regulation of the immune response against WSSV infection in crustaceans. (C) 2016 Elsevier Ltd. All rights reserved.
机译:白斑综合症病毒(WSSV)是虾和小龙虾水产养殖中最流行,分布最广的病毒之一。 MicroRNA(miRNA)是重要的转录后调节剂,在细胞分化和增殖,凋亡,信号转导和免疫中起关键作用。在这项研究中,通过在早期(即1 hpi)和晚期(即12 hpi)感染WSSV的红爪小龙虾Cherax quadricarinatus造血组织(Hpt)造血组织(Hpt)细胞培养物中进行深度测序,鉴定了miRNA表达谱。结果表明,两种已知的miRNA,即miR-7和miR-184在免疫中起关键作用。同时,通过软件在这些组合的miRNA转录组中预测了106种新颖的miRNA候选物。与两个对照组相比,WSSV攻击后36个miRNA显示出明显不同的表达水平。此外,通过定量实时RTPCR随机选择了暴露于WSSV的Hpt细胞中的10个差异表达的miRNA,用于表达分析。与通过深度测序鉴定的表达谱一致,RT-PCR显示WSSV感染后Hpt细胞中miRNA表达显着增加或减少。对miRNA的靶标(例如miR-7,cqu-miR-52,cqu-miR-126和cqu-miR-141)进行预测后发现,它们的靶标基因具有多种生物学作用,不仅包括免疫力,还包括转录调控,能量代谢,细胞通讯,细胞分化,细胞死亡,自噬,内吞和凋亡。这些结果提供了对WSSV感染的分子机制的了解,并突出了miRNA在调节甲壳类动物对WSSV感染的免疫应答中的功能。 (C)2016 Elsevier Ltd.保留所有权利。

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