A Rapid PCR-Free Next-Generation Sequencing Method for the Detection of Copy Number Variations in Prenatal Samples

被引:12
作者
Zhou, Xiya [1 ]
Chen, Xiangbin [2 ]
Jiang, Yulin [1 ]
Qi, Qingwei [1 ]
Hao, Na [1 ]
Liu, Chengkun [2 ]
Xu, Mengnan [2 ]
Cram, David S. [2 ]
Liu, Juntao [1 ]
机构
[1] Chinese Acad Med Sci, Dept Obstet & Gynecol, Peking Union Med Coll, Peking Union Med Coll Hosp, Beijing 100730, Peoples R China
[2] Berry Genom Corp, Beijing 102200, Peoples R China
来源
LIFE-BASEL | 2021年 / 11卷 / 02期
关键词
chromosome disorders; copy number variation (CNV); PCR-free libraries; rapid copy number variation sequencing (rCNV-seq); CHROMOSOMAL-ABNORMALITIES; DIAGNOSIS;
D O I
10.3390/life11020098
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Next-generation sequencing (NGS) is emerging as a new method for the detection of clinically significant copy number variants (CNVs). In this study, we developed and validated rapid CNV-sequencing (rCNV-seq) for clinical application in prenatal diagnosis. Low-pass whole-genome sequencing was performed on PCR libraries prepared from amniocyte genomic DNA. From 10-40 ng of input DNA, PCR-free libraries consistently produced sequencing data with high unique read mapping ratios, low read redundancy, low coefficient of variation for all chromosomes and high genomic coverage. In validation studies, reliable and accurate CNV detection using PCR-free-based rCNV-seq was demonstrated for a range of common trisomies and sex chromosome aneuploidies as well as microdeletion and duplication syndromes. In reproducibility studies, CNV copy number and genomic intervals closely matched those defined by chromosome microarray analysis. Clinical testing of genomic DNA samples from 217 women referred for prenatal diagnosis identified eight samples (3.7%) with known chromosome disorders. We conclude that PCR-free-based rCNV-seq is a sensitive, specific, reproducible and efficient method that can be used in any NGS-based diagnostic laboratory for detection of clinically significant CNVs.
引用
收藏
页码:1 / 14
页数:14
相关论文
共 24 条
[1]   Amniocentesis and chorionic villus sampling for prenatal diagnosis [J].
Alfirevic, Zarko ;
Navaratnam, Kate ;
Mujezinovic, Faris .
COCHRANE DATABASE OF SYSTEMATIC REVIEWS, 2017, (09)
[2]   Genomic characteristics of miscarriage copy number variants [J].
Bagheri, Hani ;
Mercier, Eloi ;
Qiao, Ying ;
Stephenson, Mary D. ;
Rajcan-Separovic, Evica .
MOLECULAR HUMAN REPRODUCTION, 2015, 21 (08) :655-661
[3]   Characterization of chromosomal abnormalities in pregnancy losses reveals critical genes and loci for human early development [J].
Chen, Yiyun ;
Bartanus, Justin ;
Liang, Desheng ;
Zhu, Hongmin ;
Breman, Amy M. ;
Smith, Janice L. ;
Wang, Hua ;
Ren, Zhilin ;
Patel, Ankita ;
Stankiewicz, Pawel ;
Cram, David S. ;
Cheung, Sau Wai ;
Wu, Lingqian ;
Yu, Fuli .
HUMAN MUTATION, 2017, 38 (06) :669-677
[4]   Chromosomal instability in mammalian pre-implantation embryos: potential causes, detection methods, and clinical consequences [J].
Daughtry, Brittany L. ;
Chavez, Shawn L. .
CELL AND TISSUE RESEARCH, 2016, 363 (01) :201-225
[5]  
Dong Zirui, 2017, Curr Protoc Hum Genet, V94, DOI 10.1002/cphg.43
[6]   An Update on Common Chromosome Microdeletion and Microduplication Syndromes [J].
Goldenberg, Paula .
PEDIATRIC ANNALS, 2018, 47 (05) :E198-E203
[7]   Chromosome Preparation From Cultured Cells [J].
Howe, Bradley ;
Umrigar, Ayesha ;
Tsien, Fern .
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2014, (83)
[8]   Prenatal diagnosis by chromosomal microarray analysis [J].
Levy, Brynn ;
Wapner, Ronald .
FERTILITY AND STERILITY, 2018, 109 (02) :201-212
[9]   Fast and accurate long-read alignment with Burrows-Wheeler transform [J].
Li, Heng ;
Durbin, Richard .
BIOINFORMATICS, 2010, 26 (05) :589-595
[10]   Copy Number Variation Sequencing for Comprehensive Diagnosis of Chromosome Disease Syndromes [J].
Liang, Desheng ;
Peng, Ying ;
Lv, Weigang ;
Deng, Linbei ;
Zhang, Yanghui ;
Li, Haoxian ;
Yang, Pu ;
Zhang, Jianguang ;
Song, Zhuo ;
Xu, Genming ;
Cram, David S. ;
Wu, Lingqian .
JOURNAL OF MOLECULAR DIAGNOSTICS, 2014, 16 (05) :519-526