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首页> 外文期刊>Nature Genetics >Haplotype-resolved whole-genome sequencing by contiguity-preserving transposition and combinatorial indexing.
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Haplotype-resolved whole-genome sequencing by contiguity-preserving transposition and combinatorial indexing.

机译:单倍型解析的全基因组测序,通过保留连续性的转座和组合索引。

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摘要

Haplotype-resolved genome sequencing enables the accurate interpretation of medically relevant genetic variation, deep inferences regarding population history and non-invasive prediction of fetal genomes. We describe an approach for genome-wide haplotyping based on contiguity-preserving transposition (CPT-seq) and combinatorial indexing. Tn5 transposition is used to modify DNA with adaptor and index sequences while preserving contiguity. After DNA dilution and compartmentalization, the transposase is removed, resolving the DNA into individually indexed libraries. The libraries in each compartment, enriched for neighboring genomic elements, are further indexed via PCR. Combinatorial 96-plex indexing at both the transposition and PCR stage enables the construction of phased synthetic reads from each of the nearly 10,000 'virtual compartments'. We demonstrate the feasibility of this method by assembling >95% of the heterozygous variants in a human genome into long, accurate haplotype blocks (N50 = 1.4-2.3 Mb). The rapid, scalable and cost-effective workflow could enable haplotype resolution to become routine in human genome sequencing.
机译:单倍型解析的基因组测序可以准确解释医学上相关的遗传变异,关于种群历史的深入推断以及胎儿基因组的非侵入性预测。我们描述了一种基于邻接保留转置(CPT-seq)和组合索引的全基因组单倍型方法。 Tn5转座用于修饰衔接子和索引序列的DNA,同时保留邻接性。 DNA稀释和区分开后,将转座酶去除,将DNA分解成单独索引的文库。通过PCR进一步索引每个隔室中富含相邻基因组元件的文库。在转座和PCR阶段均可进行组合式96重索引,可从近10,000个“虚拟区室”中的每一个构建相控合成读物。我们通过将人类基因组中> 95%的杂合变异体组装成长而准确的单倍型模块(N50 = 1.4-2.3 Mb),证明了该方法的可行性。快速,可扩展且具有成本效益的工作流程可以使单倍型解析成为人类基因组测序中的常规方法。

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