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The Schistosoma mansoni genome encodes thousands of long non-coding RNAs predicted to be functional at different parasite life-cycle stages

机译:曼氏血吸虫基因组编码成千上万个长的非编码RNA它们在不同的寄生虫生命周期阶段均具有功能

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摘要

Next Generation Sequencing (NGS) strategies, like RNA-Seq, have revealed the transcription of a wide variety of long non-coding RNAs (lncRNAs) in the genomes of several organisms. In the present work we assessed the lncRNAs complement of Schistosoma mansoni, the blood fluke that causes schistosomiasis, ranked among the most prevalent parasitic diseases worldwide. We focused on the long intergenic/intervening ncRNAs (lincRNAs), hidden within the large amount of information obtained through RNA-Seq in S. mansoni (88 libraries). Our computational pipeline identified 7029 canonically-spliced putative lincRNA genes on 2596 genomic loci (at an average 2.7 isoforms per lincRNA locus), as well as 402 spliced lncRNAs that are antisense to protein-coding (PC) genes. Hundreds of lincRNAs showed traits for being functional, such as the presence of epigenetic marks at their transcription start sites, evolutionary conservation among other schistosome species and differential expression across five different life-cycle stages of the parasite. Real-time qPCR has confirmed the differential life-cycle stage expression of a set of selected lincRNAs. We have built PC gene and lincRNA co-expression networks, unraveling key biological processes where lincRNAs might be involved during parasite development. This is the first report of a large-scale identification and structural annotation of lncRNAs in the S. mansoni genome.
机译:诸如RNA-Seq的下一代测序(NGS)策略已经揭示了多种生物的基因组中各种长的非编码RNA(lncRNA)的转录。在当前的工作中,我们评估了曼氏血吸虫的lncRNAs补体,曼氏血吸虫是引起血吸虫病的吸血者,在全世界范围内是最普遍的寄生虫病之一。我们专注于长的基因间/中间ncRNA(lincRNA),隐藏在通过曼氏葡萄球菌(88个文库)中的RNA-Seq获得的大量信息中。我们的计算流程确定了在2596个基因组位点(每个lincRNA基因座平均2.7个同工型)上的7029个标准剪接的lincRNA基因,以及402个对蛋白质编码(PC)基因反义的剪接的lncRNA。数百个lincRNA表现出功能特性,例如在其转录起始位点存在表观遗传标记,其他血吸虫物种之间的进化保守性以及该寄生虫在五个不同生命周期阶段的差异表达。实时定量PCR已经证实了一组选定的lincRNA的不同生命周期阶段表达。我们建立了PC基因和lincRNA共表达网络,揭示了寄生虫发育过程中可能涉及lincRNA的关键生物学过程。这是关于曼氏链球菌基因组中lncRNA的大规模鉴定和结构注释的首次报道。

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