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A single-molecule long-read survey of the humantranscriptome

机译:人类单分子长期阅读调查转录组

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摘要

Global RNA studies have become central to understanding biological processes, but methods such as microarrays and short-read sequencing are unable to describe an entire RNA molecule from 5′ to 3′ end. Here we use single-molecule long-read sequencing technology from Pacific Biosciences to sequence the polyadenylated RNA complement of a pooled set of 20 human organs and tissues without the need for fragmentation or amplification. We show that full-length RNA molecules of up to 1.5 kb can readily be monitored with little sequence loss at the 5′ ends. For longer RNA molecules more 5′ nucleotides are missing, but complete intron structures are often preserved. In total, we identify ~14,000 spliced GENCODE genes. High-confidence mappings are consistent with GENCODE annotations, but >10% of the alignments represent intron structures that were not previously annotated. As a group, transcripts mapping to unannotated regions have features of long, noncoding RNAs. Our results show the feasibility of deep sequencing full-length RNA from complex eukaryotic transcriptomes on a single-molecule level.
机译:全球RNA研究已成为理解生物学过程的中心,但是诸如微阵列和短读测序之类的方法无法描述5'至3'端的整个RNA分子。在这里,我们使用Pacific Biosciences的单分子长读测序技术对20个人体器官和组织的集合进行聚腺苷酸RNA互补序列的测序,而无需进行片段化或扩增。我们显示高达1.5 kb的全长RNA分子可以很容易地被监测,在5'端几乎没有序列丢失。对于更长的RNA分子,缺少更多的5'核苷酸,但通常会保留完整的内含子结构。总共,我们确定了约14,000个剪接的GENCODE基因。高可信度映射与GENCODE注释一致,但是> 10%的比对表示以前未注释的内含子结构。作为一个整体,映射到未注释区域的转录物具有长的非编码RNA的特征。我们的结果表明,从复杂的真核转录组中单分子水平对全长RNA进行深度测序的可行性。

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