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使用长片段读长(LFR)技术从 10 个细胞中进行准确测序和单体型分析。

Accurate Sequencing and Haplotyping from 10 Cells Using Long Fragment Read (LFR) Technology.

机构信息

Advanced Genomics Technology Laboratory, Complete Genomics/MGI, San Jose, CA, USA.

出版信息

Methods Mol Biol. 2023;2590:71-84. doi: 10.1007/978-1-0716-2819-5_5.

Abstract

In this chapter, we describe how Long Fragment Read (LFR) technology can be applied to samples consisting of very few cells (5-20) to enable complete genome sequencing and haplotyping with a very low false positive error rate. LFR is a method for processing DNA or cells prior to sequencing on any second-generation DNA sequencing platform (e.g., MGI's DNBSEQ, Illumina sequencers, etc.). First, the LFR process incorporates a low-bias whole genome amplification step allowing accurate sequencing from very low DNA inputs (as low as 32 picograms, the mass contained within 5 diploid human cells). In addition, LFR enables the haplotyping of nearly all genomic variations with N50 contig lengths up to ~1 Mb. Furthermore, if data from this method are analyzed with parental genotype data, it is possible to generate phased variants in uninterrupted contigs spanning entire chromosomes. Importantly, the barcoding process utilized in this method allows for the detection and correction of most amplification, sequencing, and mapping errors, yielding false positive error rates as low as 10. Finally, the cost of this method is modest and enables extremely high-quality whole genome sequence and haplotype data from as few as 5 cells. We know of few other methods that can achieve this.

摘要

在本章中,我们将描述如何将长片段读取(LFR)技术应用于由非常少量的细胞(5-20 个)组成的样本中,以实现极低的假阳性错误率的完整基因组测序和单倍型分型。LFR 是在任何第二代 DNA 测序平台(例如 MGI 的 DNBSEQ、Illumina 测序仪等)上进行 DNA 或细胞测序之前的一种处理方法。首先,LFR 过程包括低偏差全基因组扩增步骤,允许从非常低的 DNA 输入(低至 32 皮克,即 5 个人类二倍体细胞中的质量)进行准确测序。此外,LFR 能够对几乎所有基因组变异进行单倍型分型,其 N50 连续体长度可达约 1 Mb。此外,如果用亲本基因型数据分析来自该方法的数据,则可以在整个染色体上生成连续的单倍型变异。重要的是,该方法中使用的条形码处理过程允许检测和校正大多数扩增、测序和映射错误,从而产生低至 10%的假阳性错误率。最后,该方法的成本适中,能够从仅 5 个细胞获得极高质量的全基因组序列和单倍型数据。我们知道很少有其他方法可以做到这一点。

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