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NanoAsPipe: A transcriptome analysis and alternative splicing detection pipeline for MinION long-read RNA-seq

机译:NanoAsPipe:用于MinION长读RNA序列的转录组分析和替代剪接检测管线

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After the next-generation sequencing technology, long-read sequencing technologies were developed. Both the advantages and the drawbacks of long-read sequencing technologies are obvious. Here, we take advantages of long-read sequencing technology, MinION, to develop a comprehensive and user-friendly pipeline, NanoAsPipe, to identify the transcriptomic profiles, isoform profiles, and alternative splicing (AS) events of long-read RNA-seq data on the Open Science Grid (OSG). NanoAsPipe includes RNA-seq data preprocessing, mapping and alternative splicing analysis to simultaneously account for AS events. NanoAsPipe was applied to two long-read datasets and its performance was evaluated by comparing discovered AS events with gene annotation and results from short-read RNA-seq data. Majority of predicted AS events by NanoAsPipe was confirmed by the gene annotation and there is a high correlation between results from long-read data and short-read data. NanoAsPipe was implemented as a software package, which is available for academic research at http://sysbio.unl.edu/NanoAsPipe. The user may run the workflow based on the OSG environment or switch it to other computing setup environments.
机译:在下一代测序技术之后,开发了长读测序技术。长读测序技术的优点和缺点是显而易见的。在这里,我们采取了长读取测序技术,矿物,开发一种全面和用户友好的管道,纳米隙,以识别转录组谱,同种型谱和替代剪接(AS)的替代剪接(AS)事件的长读RNA-SEQ数据在开放式科学网格(OSG)。 NanoAspipe包括RNA-SEQ数据预处理,映射和替代拼接分析,同时占事件。将纳米穴应用于两个长读数据集,并通过比较作为具有基因注释的事件和短读RNA-SEQ数据的事件进行评估的性能。由于基因注释证实了纳瓦覆盆子的事件预测的大多数,并且从读取数据和短读数据的结果之间存在高的相关性。纳瓦巴斯被实施为软件包,可用于http://sysbio.unl.edu/nanaaspipe的学术研究。用户可以基于OSG环境运行工作流程,或将其切换到其他计算设置环境。

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