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全基因组测序

Whole genome sequencing.

作者信息

Ng Pauline C, Kirkness Ewen F

机构信息

The J. Craig Venter Institute, Rockville, MD, USA.

出版信息

Methods Mol Biol. 2010;628:215-26. doi: 10.1007/978-1-60327-367-1_12.

Abstract

Whole genome sequencing provides the most comprehensive collection of an individual's genetic variation. With the falling costs of sequencing technology, we envision paradigm shift from microarray-based genotyping studies to whole genome sequencing. We review methodologies for whole genome sequencing. There are two approaches for assembling short shotgun sequence reads into longer contiguous genomic sequences. In the de novo assembly approach, sequence reads are compared to each other, and then overlapped to build longer contiguous sequences. The reference-based assembly approach involves mapping each read to a reference genome sequence. We discuss methods for identifying genetic variation (single nucleotide polymorphisms, small indels, and copy number variants) and building haplotypes from genome assemblies, and discuss potential pitfalls. We expect methodologies to evolve rapidly as sequencing technologies improve and more human genomes are sequenced.

摘要

全基因组测序提供了个体遗传变异的最全面集合。随着测序技术成本的下降,我们设想从基于微阵列的基因分型研究到全基因组测序的范式转变。我们回顾了全基因组测序的方法。有两种将短枪测序读段组装成更长连续基因组序列的方法。在从头组装方法中,将测序读段相互比较,然后重叠以构建更长的连续序列。基于参考的组装方法涉及将每个读段映射到参考基因组序列。我们讨论了识别遗传变异(单核苷酸多态性、小插入缺失和拷贝数变异)以及从基因组组装构建单倍型的方法,并讨论了潜在的陷阱。随着测序技术的改进和更多人类基因组被测序,我们预计这些方法将迅速发展。

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