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对印度个体基因组变异的系统分析和功能注释。

Systematic analysis and functional annotation of variations in the genome of an Indian individual.

机构信息

Genomics and Molecular Medicine, CSIR Institute of Genomics and IntegrativeBiology, Council of Scientific and Industrial Research, Delhi, India

出版信息

Hum Mutat. 2012 Jul;33(7):1133-40. doi: 10.1002/humu.22091. Epub 2012 Apr 16.

DOI:10.1002/humu.22091
PMID:22461382
Abstract

Whole genome sequencing of personal genomes has revealed a large repertoire of genomic variations and has provided a rich template for identification of common and rare variants in genomes in addition to understanding the genetic basis of diseases. The widespread application of personal genome sequencing in clinical settings for predictive and preventive medicine has been limited due to the lack of comprehensive computational analysis pipelines. We have used next-generation sequencing technology to sequence the whole genome of a self-declared healthy male of Indian origin. We have generated around 28X of the reference human genome with over 99% coverage. Analysis revealed over 3 million single nucleotide variations and about 490,000 small insertion-deletion events including several novel variants. Using this dataset as a template, we designed a comprehensive computational analysis pipeline for the systematic analysis and annotation of functionally relevant variants in the genome. This study follows a systematic and intuitive data analysis workflow to annotate genome variations and its potential functional effects. Moreover, we integrate predictive analysis of pharmacogenomic traits with emphasis on drugs for which pharmacogenomic testing has been recommended. This study thus provides the template for genome-scale analysis of personal genomes for personalized medicine.

摘要

全基因组测序揭示了大量基因组变异,并为鉴定基因组中常见和罕见变异以及理解疾病的遗传基础提供了丰富的模板。由于缺乏全面的计算分析管道,个人基因组测序在预测和预防医学的临床环境中的广泛应用受到限制。我们使用下一代测序技术对一位自称健康的印度裔男性的全基因组进行了测序。我们生成了大约 28 倍参考人类基因组,覆盖率超过 99%。分析显示,有超过 300 万个单核苷酸变异和大约 490,000 个小插入-缺失事件,包括一些新的变异。我们使用这个数据集作为模板,设计了一个全面的计算分析管道,用于对基因组中的功能相关变异进行系统分析和注释。这项研究遵循一个系统和直观的数据分析工作流程来注释基因组变异及其潜在的功能效应。此外,我们还整合了对药物基因组特征的预测分析,重点是推荐进行药物基因组检测的药物。因此,这项研究为个性化医疗的个人基因组的全基因组分析提供了模板。

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