A clear bias in parental origin of de novo pathogenic CNVs related to intellectual disability, developmental delay and multiple congenital anomalies

被引:0
作者
Ruiyu Ma
Linbei Deng
Yan Xia
Xianda Wei
Yingxi Cao
Ruolan Guo
Rui Zhang
Jing Guo
Desheng Liang
Lingqian Wu
机构
[1] State Key Laboratory of Medical Genetics,
[2] Central South University,undefined
来源
Scientific Reports | / 7卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Copy number variation (CNV) is of great significance in human evolution and disorders. Through tracing the parent-of-origin of de novo pathogenic CNVs, we are expected to investigate the relative contributions of germline genomic stability on reproductive health. In our study, short tandem repeat (STR) and single nucleotide polymorphism (SNP) were used to determine the parent-of-origin of 87 de novo pathogenic CNVs found in unrelated patients with intellectual disability (ID), developmental delay (DD) and multiple congenital anomalies (MCA). The results shown that there was a significant difference on the distribution of the parent-of-origin for different CNVs types (Chi-square test, p = 4.914 × 10−3). An apparently paternal bias existed in deletion CNVs and a maternal bias in duplication CNVs, indicating that the relative contribution of paternal germline variations is greater than that of maternal to the origin of deletions, and vice versa to the origin of duplications. By analyzing the sequences flanking the breakpoints, we also confirmed that non-allelic homologous recombination (NAHR) served as the major mechanism for the formation of recurrent CNVs whereas non-SDs-based mechanisms played a part in generating rare non-recurrent CNVs and might relate to the paternal germline bias in deletion CNVs.
引用
收藏
相关论文
共 72 条
[1]  
Sudmant PH(2013)Evolution and diversity of copy number variation in the great ape lineage Genome Res. 23 1373-1382
[2]  
Sebat J(2004)Large-scale copy number polymorphism in the human genome Science 305 525-528
[3]  
Zarrei M(2015)A copy number variation map of the human genome Nat. Rev. Genet. 16 172-183
[4]  
MacDonald JR(2006)Structural variation in the human genome Nat. Rev. Genet. 7 85-97
[5]  
Merico D(2008)Association between microdeletion and microduplication at 16p11.2 and autism N. Engl. J. Med. 358 667-675
[6]  
Scherer SW(2010)Functional impact of global rare copy number variation in autism spectrum disorders Nature 466 368-372
[7]  
Feuk L(2012)CNVs: harbingers of a rare variant revolution in psychiatric genetics Cell 148 1223-1241
[8]  
Carson AR(2008)A recurrent 15q13.3 microdeletion syndrome associated with mental retardation and seizures Nat. Genet. 40 322-328
[9]  
Scherer SW(2006)Global variation in copy number in the human genome Nature 444 444-454
[10]  
Weiss LA(2010)Origins and functional impact of copy number variation in the human genome Nature 464 704-712