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使用 CIDER-Seq 对环状 DNA 病毒和染色体外环状 DNA 进行全长测序。

Full-length sequencing of circular DNA viruses and extrachromosomal circular DNA using CIDER-Seq.

机构信息

Laboratory of Plant Genomics, Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.

Plant Genetics, TERRA Teaching and Research Center, Gembloux Agro-Bio Tech, University of Liège, Gembloux, Belgium.

出版信息

Nat Protoc. 2020 May;15(5):1673-1689. doi: 10.1038/s41596-020-0301-0. Epub 2020 Apr 3.

Abstract

Circular DNA is ubiquitous in nature in the form of plasmids, circular DNA viruses, and extrachromosomal circular DNA (eccDNA) in eukaryotes. Sequencing of such molecules is essential to profiling virus distributions, discovering new viruses and understanding the roles of eccDNAs in eukaryotic cells. Circular DNA enrichment sequencing (CIDER-Seq) is a technique to enrich and accurately sequence circular DNA without the need for polymerase chain reaction amplification, cloning, and computational sequence assembly. The approach is based on randomly primed circular DNA amplification, which is followed by several enzymatic DNA repair steps and then by long-read sequencing. CIDER-Seq includes a custom data analysis package (CIDER-Seq Data Analysis Software 2) that implements the DeConcat algorithm to deconcatenate the long sequencing products of random circular DNA amplification into the intact sequences of the input circular DNA. The CIDER-Seq data analysis package can generate full-length annotated virus genomes, as well as circular DNA sequences of novel viruses. Applications of CIDER-Seq also include profiling of eccDNA molecules such as transposable elements (TEs) from biological samples. The method takes ~2 weeks to complete, depending on the computational resources available. Owing to the present constraints of long-read single-molecule sequencing, the accuracy of circular virus and eccDNA sequences generated by the CIDER-Seq method scales with sequence length, and the greatest accuracy is obtained for molecules <10 kb long.

摘要

环状 DNA 以质粒、环状 DNA 病毒和真核生物中外染色体环状 DNA(eccDNA)的形式在自然界中普遍存在。对这些分子进行测序对于分析病毒分布、发现新病毒以及了解 eccDNA 在真核细胞中的作用至关重要。环状 DNA 富集测序(CIDER-Seq)是一种无需聚合酶链式反应扩增、克隆和计算序列组装即可富集和准确测序环状 DNA 的技术。该方法基于随机引物的环状 DNA 扩增,随后进行几个酶促 DNA 修复步骤,然后进行长读测序。CIDER-Seq 包括一个自定义数据分析软件包(CIDER-Seq Data Analysis Software 2),该软件包实现了 DeConcat 算法,将随机环状 DNA 扩增的长测序产物拼接成输入环状 DNA 的完整序列。CIDER-Seq 数据分析软件包可以生成全长注释病毒基因组,以及新型病毒的环状 DNA 序列。CIDER-Seq 的应用还包括从生物样本中分析 eccDNA 分子,如转座元件 (TEs)。该方法大约需要 2 周时间才能完成,具体取决于可用的计算资源。由于目前长读单分子测序的限制,CIDER-Seq 方法生成的环状病毒和 eccDNA 序列的准确性与序列长度相关,对于长度<10kb 的分子,准确性最高。

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