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De Novo Characterization of the Spleen Transcriptome of the Large Yellow Croaker (Pseudosciaena crocea) and Analysis of the Immune Relevant Genes and Pathways Involved in the Antiviral Response

机译:从头的大型黄花鱼(Pseudosciaena crocea)脾转录组的表征和免疫相关基因和抗病毒反应涉及的途径的分析

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摘要

The large yellow croaker (Pseudosciaena crocea) is an economically important marine fish in China. To understand the molecular basis for antiviral defense in this species, we used Illumia paired-end sequencing to characterize the spleen transcriptome of polyriboinosinic:polyribocytidylic acid [poly(I:C)]-induced large yellow croakers. The library produced 56,355,728 reads and assembled into 108,237 contigs. As a result, 15,192 unigenes were found from this transcriptome. Gene ontology analysis showed that 4,759 genes were involved in three major functional categories: biological process, cellular component, and molecular function. We further ascertained that numerous consensus sequences were homologous to known immune-relevant genes. Kyoto Encyclopedia of Genes and Genomes orthology mapping annotated 5,389 unigenes and identified numerous immune-relevant pathways. These immune-relevant genes and pathways revealed major antiviral immunity effectors, including but not limited to: pattern recognition receptors, adaptors and signal transducers, the interferons and interferon-stimulated genes, inflammatory cytokines and receptors, complement components, and B-cell and T-cell antigen activation molecules. Moreover, the partial genes of Toll-like receptor signaling pathway, RIG-I-like receptors signaling pathway, Janus kinase-Signal Transducer and Activator of Transcription (JAK-STAT) signaling pathway, and T-cell receptor (TCR) signaling pathway were found to be changed after poly(I:C) induction by real-time polymerase chain reaction (PCR) analysis, suggesting that these signaling pathways may be regulated by poly(I:C), a viral mimic. Overall, the antivirus-related genes and signaling pathways that were identified in response to poly(I:C) challenge provide valuable leads for further investigation of the antiviral defense mechanism in the large yellow croaker.
机译:大黄鱼(Pseudosciaena crocea)是中国经济上重要的海水鱼。为了了解该物种中抗病毒防御的分子基础,我们使用了Illumia配对末端测序来表征多核糖苷酸:多核糖酸[poly(I:C)]诱导的大型黄花鱼的脾转录组。该库产生了56,355,728个读段,并被组装成108,237个重叠群。结果,从该转录组中发现了15192个单基因。基因本体分析表明,4,759个基因涉及三个主要功能类别:生物过程,细胞成分和分子功能。我们进一步确定了许多共有序列与已知的免疫相关基因同源。 《京都市基因与基因组正交学百科全书》绘制了5389个单基因的注释,并鉴定了许多与免疫相关的途径。这些与免疫相关的基因和途径揭示了主要的抗病毒免疫效应子,包括但不限于:模式识别受体,衔接子和信号转导子,干扰素和干扰素刺激的基因,炎性细胞因子和受体,补体成分以及B细胞和T -细胞抗原激活分子。此外,Toll样受体信号转导通路,RIG-I样受体信号转导通路,Janus激酶信号转导和转录激活子(JAK-STAT)信号转导通路以及T细胞受体(TCR)信号转导通路的部分基因分别为发现通过实时聚合酶链反应(PCR)分析在poly(I:C)诱导后发生改变,表明这些信号传导途径可能受病毒模拟物poly(I:C)调节。总体而言,响应于poly(I:C)攻击而确定的与抗病毒相关的基因和信号通路为进一步研究大黄鱼中的抗病毒防御机制提供了有价值的线索。

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