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RiboRid:一种用于细菌转录组学的低成本、先进且超高效率的去除核糖体 RNA 的方法。

RiboRid: A low cost, advanced, and ultra-efficient method to remove ribosomal RNA for bacterial transcriptomics.

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.

Innovative Biomaterials Research Center, KI for the BioCentury, Korea Advanced Institute of Science and Technology, Daejeon, Republic of Korea.

出版信息

PLoS Genet. 2021 Sep 27;17(9):e1009821. doi: 10.1371/journal.pgen.1009821. eCollection 2021 Sep.

Abstract

RNA sequencing techniques have enabled the systematic elucidation of gene expression (RNA-Seq), transcription start sites (differential RNA-Seq), transcript 3' ends (Term-Seq), and post-transcriptional processes (ribosome profiling). The main challenge of transcriptomic studies is to remove ribosomal RNAs (rRNAs), which comprise more than 90% of the total RNA in a cell. Here, we report a low-cost and robust bacterial rRNA depletion method, RiboRid, based on the enzymatic degradation of rRNA by thermostable RNase H. This method implemented experimental considerations to minimize nonspecific degradation of mRNA and is capable of depleting pre-rRNAs that often comprise a large portion of RNA, even after rRNA depletion. We demonstrated the highly efficient removal of rRNA up to a removal efficiency of 99.99% for various transcriptome studies, including RNA-Seq, Term-Seq, and ribosome profiling, with a cost of approximately $10 per sample. This method is expected to be a robust method for large-scale high-throughput bacterial transcriptomic studies.

摘要

RNA 测序技术已经能够系统地阐明基因表达(RNA-Seq)、转录起始位点(差异 RNA-Seq)、转录本 3' 端(Term-Seq)和转录后过程(核糖体分析)。转录组研究的主要挑战是去除核糖体 RNA(rRNA),rRNA 在细胞内的总 RNA 中占比超过 90%。在这里,我们报告了一种基于耐热 RNase H 酶促降解 rRNA 的低成本、稳健的细菌 rRNA 耗尽方法 RiboRid。该方法考虑了实验因素,以最小化 mRNA 的非特异性降解,并且能够耗尽 rRNA 耗尽后通常占 RNA 很大一部分的前 rRNA。我们证明了 rRNA 的高效去除,在各种转录组研究中,包括 RNA-Seq、Term-Seq 和核糖体分析,去除效率高达 99.99%,每个样本的成本约为 10 美元。该方法有望成为大规模高通量细菌转录组研究的一种稳健方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a913/8496792/447e163b226d/pgen.1009821.g001.jpg

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