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Assembly of allele-aware, chromosomal-scale autopolyploid genomes based on Hi-C data

机译:基于Hi-C数据的等位基因感知,染色体尺度自动平面基因组的组装

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摘要

Construction of chromosome-level assembly is a vital step in achieving the goal of a 'Platinum' genome, but it remains a major challenge to assemble and anchor sequences to chromosomes in autopolyploid or highly heterozygous genomes. High-throughput chromosome conformation capture (Hi-C) technology serves as a robust tool to dramatically advance chromosome scaffolding; however, existing approaches are mostly designed for diploid genomes and often with the aim of reconstructing a haploid representation, thereby having limited power to reconstruct chromosomes for autopolyploid genomes. We developed a novel algorithm (ALLHiC) that is capable of building allele-aware, chromosomal-scale assembly for autopolyploid genomes using Hi-C paired-end reads with innovative 'prune' and 'optimize' steps. Application on simulated data showed that ALLHiC can phase allelic contigs and substantially improve ordering and orientation when compared to other mainstream Hi-C assemblers. We applied ALLHiC on an autotetraploid and an autooctoploid sugar-cane genome and successfully constructed the phased chromosomal-level assemblies, revealing allelic variations present in these two genomes. The ALLHiC pipeline enables de novo chromosome-level assembly of autopolyploid genomes, separating each allele. Haplotype chromosome-level assembly of allopolyploid and heterozygous diploid genomes can be achieved using ALLHiC, overcoming obstacles in assembling complex genomes.
机译:染色体水平组装的构建是实现“铂”基因组目标的重要步骤,但它仍然是将其在自基金倍差或高度杂合子组织中的染色体沉淀序列的主要挑战。高通量染色体构象捕获(HI-C)技术用作鲁棒工具,以急剧提高染色体脚手架;然而,现有的方法主要设计用于二倍体基因组,通常是重构单倍体表示的目的,从而具有有限的力量来重建用于自动化合物基因组的染色体。我们开发了一种新颖的算法(Allhic),其能够建立等级感知的染色体级组件,用于使用Hi-C配对读取的自动化倍增型基因组,具有创新的“修剪”和“优化”步骤。在模拟数据上的应用表明,与其他主流Hi-C组装器相比,Allhic Can相位等位基因共体和大大提高的排序和取向。我们在自身传递物包上应用Allhic和AutoOcroploid甘蔗基因组,并成功地构建了相位染色体水平组件,揭示了这两个基因组中存在的等位基因变异。 Allhic管道能够实现自动化倍增型基因组的Novo染色体级组装,分离各等位基因。可以使用Allhic克服复合基因组的含有Allhic克服的单倍型和杂合性二倍体基因组的单倍型染色体组装。

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  • 来源
    《Nature Plants》 |2019年第8期|共13页
  • 作者单位

    Fujian Agr &

    Forestry Univ Ctr Genom &

    Biotechnol Minist Educ Fujian Prov Key Lab Haixia Appl Plant Key Lab Genet Breeding &

    Multiple Utilizat Corps Fuzhou Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Ctr Genom &

    Biotechnol Minist Educ Fujian Prov Key Lab Haixia Appl Plant Key Lab Genet Breeding &

    Multiple Utilizat Corps Fuzhou Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ State Key Lab Ecol Pest Control Fujian Taiwan Cro Fuzhou Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Ctr Genom &

    Biotechnol Minist Educ Fujian Prov Key Lab Haixia Appl Plant Key Lab Genet Breeding &

    Multiple Utilizat Corps Fuzhou Fujian Peoples R China;

    Fujian Agr &

    Forestry Univ Ctr Genom &

    Biotechnol Minist Educ Fujian Prov Key Lab Haixia Appl Plant Key Lab Genet Breeding &

    Multiple Utilizat Corps Fuzhou Fujian Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

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