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Identification and analysis of long non-coding RNAs in response to H5N1 influenza viruses in duck (Anas platyrhynchos)

机译:在鸭子H5N1流感病毒的鉴定与分析,鸭(ANAS platyrhynchos)

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Long non-coding RNAs (lncRNAs) are important component of mammalian genomes, where their numbers are even larger than that of protein-coding genes. For example, human (Homo sapiens) (96,308 vs. 20,376) and mouse (Mus musculus) (87,774 vs. 22,630) have more lncRNA genes than protein-coding genes in the NONCODEv5 database. Recently, mammalian lncRNAs were reported to play critical roles in immune response to influenza A virus infections. Such observation inspired us to identify lncRNAs related to immune response to influenza A virus in duck, which is the most important natural host of influenza A viruses. We explored features of 62,447 lncRNAs from human, mouse, chicken, zebrafish and elegans, and developed a pipeline to identify lncRNAs using the identified features with transcriptomic data. We then collected 151,970 assembled transcripts from RNA-Seq data of 21 individuals from three tissues and annotated 4094 duck lncRNAs. Comparing to duck protein-coding transcripts, we found that 4094 lncRNAs had smaller number of exons (2.4 vs. 10.2) and longer length of transcripts (1903.0?bp vs. 1686.9?bp) on average. Among them, 3586 (87.6%) lncRNAs located in intergenic regions and 619 lncRNAs showed differential expression in ducks infected by H5N1 virus when compared to control individuals. 58 lncRNAs were involved into two co-expressional modules related to anti-influenza A virus immune response. Moreover, we confirmed that eight lncRNAs showed remarkably differential expression both in vivo (duck individuals) and in vitro (duck embryo fibroblast cells, DEF cells) after infected with H5N1 viruses, implying they might play important roles in response to influenza A virus infection. This study presented an example to annotate lncRNA in new species based on model species using transcriptome data. These data and analysis provide information for duck lncRNAs' function in immune response to influenza A virus.
机译:长期非编码RNA(LNCRNA)是哺乳动物基因组的重要组成部分,其中它们的数量甚至大于蛋白质编码基因的数量。例如,人(HOMO SAPIENS)(96,308 vs.20,376)和小鼠(MUS Musculus)(87,774与22,630)具有比非积极的第5个数据库中的蛋白质编码基因更多的lncrna基因。最近,据报道,哺乳动物LNCRNA在免疫应答对流感病毒感染中起重要作用。这种观察感启发了我们鉴定与鸭绒流感病毒的免疫反应相关的LNCRNA,这是流感中最重要的流感病毒的自然宿主。我们探讨了人类,鼠标,鸡,斑马鱼和埃贝朗斯62,447克尔克拉的特点,并开发了一种管道,用于使用具有转录组数据的识别的特征来识别LNCRNA。然后,从三种组织中收集来自21个个体的RNA-SEQ数据的151,970个组装的转录物,并向4094鸭LNCRNA注释。与鸭蛋白编码转录物相比,我们发现4094LNCRNA平均细胞(2.4 vs.10.2)和较长的转录物(1903.0〜Bp vs.1686.9?BP)的较长数量越来越多。其中,与对照个体相比,3586(87.6%)位于非基因区域和619克朗的LNCRNA,其在H5N1病毒感染的鸭子中显示出差异表达。 58 LNCRNA参与了与抗流感病毒免疫应答有关的两个共同表达模块。此外,我们证实,8个lncRNAs表现出显着的差异表达在体内(鸭个人)和体外(鸭胚成纤维细胞,DEF细胞)感染H5N1病毒后,这意味着他们可能在应对甲型流感病毒感染中发挥重要作用。本研究介绍了一种基于使用转录组数据的模型物种在新物种中注释LNCRNA的一个例子。这些数据和分析为鸭LNCRNA的功能提供了对流感病毒的免疫应答的功能。

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