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mirTrios:一种用于从基于三联体的下一代测序中检测新生和罕见遗传突变的综合流程。

mirTrios: an integrated pipeline for detection of de novo and rare inherited mutations from trios-based next-generation sequencing.

作者信息

Li Jinchen, Jiang Yi, Wang Tao, Chen Huiqian, Xie Qing, Shao Qianzhi, Ran Xia, Xia Kun, Sun Zhong Sheng, Wu Jinyu

机构信息

Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing, China Institute of Genomic Medicine, Wenzhou Medical University, Wenzhou, China State Key Laboratory of Medical Genetics, Central South University, Changsha, China.

Institute of Genomic Medicine, Wenzhou Medical University, Wenzhou, China.

出版信息

J Med Genet. 2015 Apr;52(4):275-81. doi: 10.1136/jmedgenet-2014-102656. Epub 2015 Jan 16.

Abstract

OBJECTIVES

Recently, several studies documented that de novo mutations (DNMs) play important roles in the aetiology of sporadic diseases. Next-generation sequencing (NGS) enables variant calling at single-base resolution on a genome-wide scale. However, accurate identification of DNMs from NGS data still remains a major challenge. We developed mirTrios, a web server, to accurately detect DNMs and rare inherited mutations from NGS data in sporadic diseases.

METHODS

The expectation-maximisation (EM) model was adopted to accurately identify DNMs from variant call files of a trio generated by GATK (Genome Analysis Toolkit). The GATK results, which contain certain basic properties (such as PL, PRT and PART), are iteratively integrated into the EM model to strike a threshold for DNMs detection. Training sets of true and false positive DNMs in the EM model were built from whole genome sequencing data of 64 trios.

RESULTS

With our in-house whole exome sequencing datasets from 20 trios, mirTrios totally identified 27 DNMs in the coding region, 25 of which (92.6%) are validated as true positives. In addition, to facilitate the interpretation of diverse mutations, mirTrios can also be employed in the identification of rare inherited mutations. Embedded with abundant annotation of DNMs and rare inherited mutations, mirTrios also supports known diagnostic variants and causative gene identification, as well as the prioritisation of novel and promising candidate genes.

CONCLUSIONS

mirTrios provides an intuitive interface for the general geneticist and clinician, and can be widely used for detection of DNMs and rare inherited mutations, and annotation in sporadic diseases. mirTrios is freely available at http://centre.bioinformatics.zj.cn/mirTrios/.

摘要

目的

最近,多项研究表明新发突变(DNMs)在散发性疾病的病因学中起重要作用。新一代测序(NGS)能够在全基因组范围内以单碱基分辨率进行变异检测。然而,从NGS数据中准确识别DNMs仍然是一项重大挑战。我们开发了一个网络服务器mirTrios,用于从散发性疾病的NGS数据中准确检测DNMs和罕见的遗传突变。

方法

采用期望最大化(EM)模型从GATK(基因组分析工具包)生成的三联体变异调用文件中准确识别DNMs。将包含某些基本属性(如PL、PRT和PART)的GATK结果迭代整合到EM模型中,以确定DNMs检测的阈值。EM模型中真阳性和假阳性DNMs的训练集是根据64个三联体的全基因组测序数据构建的。

结果

利用我们来自20个三联体的内部全外显子测序数据集,mirTrios在编码区共识别出27个DNMs,其中25个(92.6%)被验证为真阳性。此外,为便于解释各种突变,mirTrios还可用于识别罕见的遗传突变。mirTrios嵌入了丰富的DNMs和罕见遗传突变注释,还支持已知诊断变异和致病基因的识别,以及对新的和有前景的候选基因进行优先级排序。

结论

mirTrios为普通遗传学家和临床医生提供了一个直观的界面,可广泛用于散发性疾病中DNMs和罕见遗传突变的检测及注释。可通过http://centre.bioinformatics.zj.cn/mirTrios/免费使用mirTrios。

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