Development of coupling controlled polymerizations by adapter-ligation in mate-pair sequencing for detection of various genomic variants in one single assay.

Zirui Dong, Xia Zhao, Qiaoling Li, Zhenjun Yang, Yang Xi, Andrei Alexeev, Hanjie Shen, Ou Wang, Jie Ruan, Han Ren, Hanmin Wei, Xiaojuan Qi, Jiguang Li, Xiaofan Zhu, Yanyan Zhang, Peng Dai, Xiangdong Kong, Killeen Kirkconnell, Oleg Alferov, Shane Giles, Jennifer Yamtich, Bahram G Kermani, Chao Dong, Pengjuan Liu, Zilan Mi, Wenwei Zhang, Xun Xu, Radoje Drmanac, Kwong Wai Choy, Yuan Jiang
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引用次数: 15

Abstract

The diversity of disease presentations warrants one single assay for detection and delineation of various genomic disorders. Herein, we describe a gel-free and biotin-capture-free mate-pair method through coupling Controlled Polymerizations by Adapter-Ligation (CP-AL). We first demonstrated the feasibility and ease-of-use in monitoring DNA nick translation and primer extension by limiting the nucleotide input. By coupling these two controlled polymerizations by a reported non-conventional adapter-ligation reaction 3' branch ligation, we evidenced that CP-AL significantly increased DNA circularization efficiency (by 4-fold) and was applicable for different sequencing methods but at a faction of current cost. Its advantages were further demonstrated by fully elimination of small-insert-contaminated (by 39.3-fold) with a ∼50% increment of physical coverage, and producing uniform genome/exome coverage and the lowest chimeric rate. It achieved single-nucleotide variants detection with sensitivity and specificity up to 97.3 and 99.7%, respectively, compared with data from small-insert libraries. In addition, this method can provide a comprehensive delineation of structural rearrangements, evidenced by a potential diagnosis in a patient with oligo-atheno-terato-spermia. Moreover, it enables accurate mutation identification by integration of genomic variants from different aberration types. Overall, it provides a potential single-integrated solution for detecting various genomic variants, facilitating a genetic diagnosis in human diseases.

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发展偶联控制聚合的接头连接在配偶对测序检测各种基因组变异在一个单一的分析。
疾病表现的多样性保证了检测和描述各种基因组疾病的单一分析。在这里,我们描述了一种通过适配器连接(CP-AL)偶联控制聚合的无凝胶和无生物素捕获的伴侣对方法。我们首先证明了通过限制核苷酸输入来监测DNA缺口翻译和引物延伸的可行性和易用性。通过报道的非传统接头连接反应3'分支连接耦合这两种控制聚合,我们证明了CP-AL显着提高了DNA循环效率(4倍),并且适用于不同的测序方法,但成本相同。它的优势进一步被证明是完全消除了小插入物污染(39.3倍),物理覆盖率增加了~ 50%,并且产生了均匀的基因组/外显子组覆盖率和最低的嵌合率。与来自小插入文库的数据相比,它实现了单核苷酸变异检测,灵敏度和特异性分别高达97.3和99.7%。此外,这种方法可以提供一个全面的描述结构重排,证明了潜在的诊断患者少atheno-畸胎化精子症。此外,它可以通过整合来自不同畸变类型的基因组变体来准确识别突变。总的来说,它为检测各种基因组变异提供了一个潜在的单一集成解决方案,促进了人类疾病的遗传诊断。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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