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利用纳米孔测序分析叶绿体转录组 第一部分:文库制备。

The Use of Nanopore Sequencing to Analyze the Chloroplast Transcriptome Part I: Library Preparation.

机构信息

Institute of Plant Sciences Paris-Saclay (IPS2), Université Paris-Saclay, CNRS, INRAE, Université Evry, Gif sur Yvette, France.

Laboratoire de Mathématiques et de Modélisation d'Evry (LaMME), Université d'Evry-Val-d'Essonne, UMR CNRS 8071, ENSIIE, USC INRAE, Evry, France.

出版信息

Methods Mol Biol. 2024;2776:243-257. doi: 10.1007/978-1-0716-3726-5_15.

Abstract

Global understanding of plastid gene expression has always been impaired by its complexity. RNA splicing, editing, and intercistronic processing create multiple transcripts isoforms that can hardly be resolved using traditional molecular biology techniques. During the last decade, the wide adoption of RNA-seq-based techniques has, however, allowed an unprecedented understanding of all the different steps of chloroplast gene expression, from transcription to translation. Current strategies are nonetheless unable to identify and quantify full length transcripts isoforms, a limitation that can now be overcome using Nanopore Sequencing. We here provide a complete protocol to produce, from total leaf RNA, cDNA libraries ready for Nanopore sequencing. While most Nanopore protocols take advantage of the mRNA polyA tail we here first ligate an RNA adapter to the 3' ends of the RNAs and use it to initiate the template switching reverse transcription. The cDNA is then prepared and indexed for use with the regular Oxford Nanopore v14 chemistry. This protocol is of particular interest to researchers willing to simultaneously study the multiple post-transcriptional processes prevalent in the chloroplast.

摘要

全球范围内对质体基因表达的认识一直受到其复杂性的影响。RNA 剪接、编辑和内含子间加工产生了多种转录本异构体,这使得传统的分子生物学技术很难对其进行解析。然而,在过去十年中,基于 RNA-seq 的技术的广泛采用,使得人们能够以前所未有的方式理解从转录到翻译的叶绿体基因表达的所有不同步骤。然而,目前的策略仍然无法识别和定量全长转录本异构体,这一限制现在可以使用纳米孔测序来克服。在这里,我们提供了一个完整的方案,从总叶 RNA 中制备用于纳米孔测序的 cDNA 文库。虽然大多数纳米孔方案都利用了 mRNA 的 polyA 尾巴,但我们首先将 RNA 接头连接到 RNA 的 3' 端,并利用它启动模板转换逆转录。然后制备 cDNA 并对其进行索引,以与常规的 Oxford Nanopore v14 化学试剂一起使用。对于那些同时愿意研究叶绿体中普遍存在的多种转录后过程的研究人员来说,这个方案特别有意义。

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