Zhang Xuejun
Institute of Dermatology and Department of Dermatology, First Affiliated Hospital, Anhui Medical University, Hefei, 230032, China,
Front Med. 2014 Mar;8(1):42-57. doi: 10.1007/s11684-014-0303-9. Epub 2014 Jan 3.
The advent of whole-exome sequencing (WES) has facilitated the discovery of rare structure and functional genetic variants. Combining exome sequencing with linkage studies is one of the most efficient strategies in searching disease genes for Mendelian diseases. WES has achieved great success in the past three years for Mendelian disease genetics and has identified over 150 new Mendelian disease genes. We illustrate the workflow of exome capture and sequencing to highlight the advantages of WES. We also indicate the progress and limitations of WES that can potentially result in failure to identify disease-causing mutations in part of patients. With an affordable cost, WES is expected to become the most commonly used tool for Mendelian disease gene identification. The variants detected cumulatively from previous WES studies will be widely used in future clinical services.
全外显子组测序(WES)的出现促进了罕见结构和功能基因变异的发现。将外显子组测序与连锁研究相结合是寻找孟德尔疾病致病基因最有效的策略之一。在过去三年中,WES在孟德尔疾病遗传学方面取得了巨大成功,已鉴定出150多个新的孟德尔疾病基因。我们阐述了外显子组捕获和测序的工作流程,以突出WES的优势。我们还指出了WES的进展和局限性,这些可能导致部分患者无法鉴定出致病突变。由于成本可承受,WES有望成为鉴定孟德尔疾病基因最常用的工具。先前WES研究中累积检测到的变异将在未来临床服务中广泛应用。