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Analysis of C. elegans muscle transcriptome using trans-splicing-based RNA tagging (SRT)

机译:使用基于转拼的RNA标记(SRT)分析秀丽隐杆线虫的肌肉转录组

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摘要

Current approaches to profiling tissue-specific gene expression in C. elegans require delicate manipulation and are difficult under certain conditions, e.g. from dauer or aging worms. We have developed an easy and robust method for tissue-specific RNA-seq by taking advantage of the endogenous trans-splicing process. In this method, transgenic worms are generated in which a spliced leader (SL) RNA gene is fused with a sequence tag and driven by a tissue-specific promoter. Only in the tissue of interest, the tagged SL RNA gene is transcribed and then trans-spliced onto mRNAs. The tag allows enrichment and sequencing of mRNAs from that tissue only. As a proof of principle, we profiled the muscle transcriptome, which showed high coverage and efficient enrichment of muscle specific genes, with low background noise. To demonstrate the robustness of our method, we profiled muscle gene expression in dauer larvae and aging worms, revealing gene expression changes consistent with the physiology of these stages. The resulting muscle transcriptome also revealed 461 novel RNA transcripts, likely muscle-expressed long non-coding RNAs. In summary, the splicing-based RNA tagging (SRT) method provides a convenient and robust tool to profile trans-spliced genes and identify novel transcripts in a tissue-specific manner, with a low false positive rate.
机译:目前对秀丽隐杆线虫组织特异性基因表达进行谱分析的方法需要精细的操作,并且在某些条件下(例如某些条件下)是困难的。来自道尔虫或老化的蠕虫。我们已经利用内源性转拼过程为组织特异性RNA序列开发了一种简便而强大的方法。在这种方法中,产生了转基因蠕虫,其中剪接的前导(SL)RNA基因与序列标签融合在一起,并由组织特异性启动子驱动。仅在感兴趣的组织中,将标记的SL RNA基因转录,然后再反转录到mRNA上。标签仅允许从该组织富集和测序mRNA。作为原理的证明,我们对肌肉转录组进行了分析,该转录组显示出肌肉特定基因的高覆盖率和有效富集,背景噪音低。为了证明我们方法的鲁棒性,我们分析了道尔幼虫和衰老蠕虫中的肌肉基因表达,揭示了与这些阶段的生理学一致的基因表达变化。所得的肌肉转录组还揭示了461个新的RNA转录本,可能是肌肉表达的长非编码RNA。总而言之,基于剪接的RNA标记(SRT)方法提供了一种方便而强大的工具,可以以特定于组织的方式分析反剪接的基因并鉴定新的转录本,假阳性率低。

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