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Gamete binning: chromosome-level and haplotype-resolved genome assembly enabled by high-throughput single-cell sequencing of gamete genomes

机译:配子箱:通过配子基因组的高通量单细胞测序使能染色体水平和单倍型分辨基因组组件

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摘要

Abstract Generating chromosome-level, haplotype-resolved assemblies of heterozygous genomes remains challenging. To address this, we developed gamete binning, a method based on single-cell sequencing of haploid gametes enabling separation of the whole-genome sequencing reads into haplotype-specific reads sets. After assembling the reads of each haplotype, the contigs are scaffolded to chromosome level using a genetic map derived from the gametes. We assemble the two genomes of a diploid apricot tree based on whole-genome sequencing of 445 individual pollen grains. The two haplotype assemblies (N50: 25.5 and 25.8 Mb) feature a haplotyping precision of greater than 99% and are accurately scaffolded to chromosome-level.
机译:摘要产生染色体水平,杂合子基因组的单倍型分辨组件仍然具有挑战性。为了解决这个问题,我们开发了基于单细胞排序的单细胞配音的方法,使全基因组测序的分离读入单倍型读取集合。在组装每种单倍型的读取之后,使用衍生自配子的遗传图谱,CONDIGS对染色体水平进行染色体水平。我们基于445个单个花粉颗粒的全基因组测序组装二倍体杏树的两个基因组。两种单倍型组件(N50:25.5和25.8 MB)具有大于99%的单倍分型精度,并准确地脚手屑至染色体水平。

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