外显子组测序
遗传学
生物
遗传异质性
外显子组
听力损失
孟德尔遗传
DNA测序
桑格测序
基因座(遗传学)
人类遗传学
分类交配
遗传连锁
基因
突变
交配
表型
医学
听力学
作者
Qing Jie,Denise Yan,Yuan Zhou,Qiong Liu,Weijing Wu,Zian Xiao,Yuyuan Liu,Jia Liu,Li‐Lin Du,Dinghua Xie,Xue Zhong Liu
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2014-10-07
卷期号:9 (10): e109178-e109178
被引量:23
标识
DOI:10.1371/journal.pone.0109178
摘要
Inherited deafness has been shown to have high genetic heterogeneity. For many decades, linkage analysis and candidate gene approaches have been the main tools to elucidate the genetics of hearing loss. However, this associated study design is costly, time-consuming, and unsuitable for small families. This is mainly due to the inadequate numbers of available affected individuals, locus heterogeneity, and assortative mating. Exome sequencing has now become technically feasible and a cost-effective method for detection of disease variants underlying Mendelian disorders due to the recent advances in next-generation sequencing (NGS) technologies. In the present study, we have combined both the Deafness Gene Mutation Detection Array and exome sequencing to identify deafness causative variants in a large Chinese composite family with deaf by deaf mating. The simultaneous screening of the 9 common deafness mutations using the allele-specific PCR based universal array, resulted in the identification of the 1555A>G in the mitochondrial DNA (mtDNA) 12S rRNA in affected individuals in one branch of the family. We then subjected the mutation-negative cases to exome sequencing and identified novel causative variants in the MYH14 and WFS1 genes. This report confirms the effective use of a NGS technique to detect pathogenic mutations in affected individuals who were not candidates for classical genetic studies.
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