Unknown

Dataset Information

0

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


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.

SUBMITTER: Dong Z 

PROVIDER: S-EPMC6704401 | biostudies-literature | 2019 Aug

REPOSITORIES: biostudies-literature

altmetric image

Publications

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

Dong Zirui Z   Zhao Xia X   Li Qiaoling Q   Yang Zhenjun Z   Xi Yang Y   Alexeev Andrei A   Shen Hanjie H   Wang Ou O   Ruan Jie J   Ren Han H   Wei Hanmin H   Qi Xiaojuan X   Li Jiguang J   Zhu Xiaofan X   Zhang Yanyan Y   Dai Peng P   Kong Xiangdong X   Kirkconnell Killeen K   Alferov Oleg O   Giles Shane S   Yamtich Jennifer J   Kermani Bahram G BG   Dong Chao C   Liu Pengjuan P   Mi Zilan Z   Zhang Wenwei W   Xu Xun X   Drmanac Radoje R   Choy Kwong Wai KW   Jiang Yuan Y  

DNA research : an international journal for rapid publication of reports on genes and genomes 20190801 4


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 adapte  ...[more]

Similar Datasets

| PRJEB4453 | ENA
| PRJEB13570 | ENA
| S-EPMC2671338 | biostudies-literature
| PRJEB61637 | ENA
| S-EPMC6117203 | biostudies-literature
2012-05-15 | E-MTAB-1082 | biostudies-arrayexpress
| PRJEB8559 | ENA
| S-EPMC9835417 | biostudies-literature
2016-10-27 | GSE89213 | GEO