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使用 Cre-LoxP 反向 PCR 方法生成长插入片段对。

Generation of long insert pairs using a Cre-LoxP Inverse PCR approach.

机构信息

Joint Genome Institute, United States Department of Energy, Walnut Creek, California, United States of America.

出版信息

PLoS One. 2012;7(1):e29437. doi: 10.1371/journal.pone.0029437. Epub 2012 Jan 9.

Abstract

Large insert mate pair reads have a major impact on the overall success of de novo assembly and the discovery of inherited and acquired structural variants. The positional information of mate pair reads generally improves genome assembly by resolving repeat elements and/or ordering contigs. Currently available methods for building such libraries have one or more of limitations, such as relatively small insert size; unable to distinguish the junction of two ends; and/or low throughput. We developed a new approach, Cre-LoxP Inverse PCR Paired-End (CLIP-PE), which exploits the advantages of (1) Cre-LoxP recombination system to efficiently circularize large DNA fragments, (2) inverse PCR to enrich for the desired products that contain both ends of the large DNA fragments, and (3) the use of restriction enzymes to introduce a recognizable junction site between ligated fragment ends and to improve the self-ligation efficiency. We have successfully created CLIP-PE libraries up to 22 kb that are rich in informative read pairs and low in small fragment background. These libraries have demonstrated the ability to improve genome assemblies. The CLIP-PE methodology can be implemented with existing and future next-generation sequencing platforms.

摘要

大片段连接 mate 对读对从头组装和发现遗传和获得性结构变体的整体成功率有重大影响。mate 对读的位置信息通常通过解决重复元件和/或对连续体进行排序来提高基因组组装质量。目前可用的构建此类文库的方法具有一个或多个局限性,例如插入片段相对较小;无法区分两个末端的连接;以及/或者吞吐量低。我们开发了一种新方法,Cre-LoxP 反向 PCR 配对末端(CLIP-PE),该方法利用了以下优势:(1)Cre-LoxP 重组系统可有效地将大 DNA 片段环化;(2)反向 PCR 可富集包含大 DNA 片段两端的所需产物;(3)使用限制性内切酶在连接片段末端之间引入可识别的连接位点,并提高自连接效率。我们已经成功创建了长达 22 kb 的 CLIP-PE 文库,这些文库富含信息丰富的 read 对,而小片段背景较少。这些文库已经证明了提高基因组组装能力的能力。CLIP-PE 方法可以在现有和未来的下一代测序平台上实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f46/3253782/56bce34c13ea/pone.0029437.g001.jpg

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