跳到主要导航 跳到搜索 跳到主要内容

Accurate haplotype-resolved assembly reveals the origin of structural variants for human trios

  • Mengyang Xu
  • , Lidong Guo
  • , Xiao Du
  • , Lei Li
  • , Brock A. Peters
  • , Li Deng
  • , Ou Wang
  • , Fang Chen
  • , Jun Wang
  • , Zhesheng Jiang
  • , Jinglin Han
  • , Ming Ni
  • , Huanming Yang
  • , Xun Xu
  • , Xin Liu
  • , Jie Huang
  • , Guangyi Fan
  • BGI-Qingdao
  • BGI-Shenzhen
  • University of Chinese Academy of Sciences
  • Complete Genomics Inc.
  • National Institutes for food and drug Control (NIFDC)

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

Motivation: Achieving a near complete understanding of how the genome of an individual affects the phenotypes of that individual requires deciphering the order of variations along homologous chromosomes in species with diploid genomes. However, true diploid assembly of long-range haplotypes remains challenging. Results: To address this, we have developed Haplotype-resolved Assembly for Synthetic long reads using a Trio-binning strategy, or HAST, which uses parental information to classify reads into maternal or paternal. Once sorted, these reads are used to independently de novo assemble the parent-specific haplotypes. We applied HAST to cobarcoded second-generation sequencing data from an Asian individual, resulting in a haplotype assembly covering 94.7% of the reference genome with a scaffold N50 longer than 11 Mb. The high haplotyping precision (~99.7%) and recall (~95.9%) represents a substantial improvement over the commonly used tool for assembling cobarcoded reads (Supernova), and is comparable to a trio-binning-based third generation long-read-based assembly method (TrioCanu) but with a significantly higher single-base accuracy [up to 99.99997% (Q65)]. This makes HAST a superior tool for accurate haplotyping and future haplotype-based studies.

源语言英语
页(从-至)2095-2102
页数8
期刊Bioinformatics
37
15
DOI
出版状态已出版 - 1 8月 2021
已对外发布

指纹图谱

探究 'Accurate haplotype-resolved assembly reveals the origin of structural variants for human trios' 的科研主题。它们共同构成独一无二的学术指纹。

引用此