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真核生物基因组的等位基因特异性组装纠正了明显的移码突变,并揭示了无义介导的mRNA降解的缺失。

Allele-specific assembly of a eukaryotic genome corrects apparent frameshifts and reveals a lack of nonsense-mediated mRNA decay.

作者信息

Cosentino Raúl O, Brink Benedikt G, Siegel T Nicolai

机构信息

Division of Experimental Parasitology, Faculty of Veterinary Medicine, Ludwig-Maximilians-Universität in Munich, Lena-Christ-Str. 48, Planegg-Martinsried 82152, Germany.

出版信息

NAR Genom Bioinform. 2021 Sep 16;3(3):lqab082. doi: 10.1093/nargab/lqab082. eCollection 2021 Sep.

Abstract

To date, most reference genomes represent a mosaic consensus sequence in which the homologous chromosomes are collapsed into one sequence. This approach produces sequence artefacts and impedes analyses of allele-specific mechanisms. Here, we report an allele-specific genome assembly of the diploid parasite and reveal allelic variants affecting gene expression. Using long-read sequencing and chromosome conformation capture data, we could assign 99.5% of all heterozygote variants to a specific homologous chromosome and build a 66 Mb long allele-specific genome assembly. The phasing of haplotypes allowed us to resolve hundreds of artefacts present in the previous mosaic consensus assembly. In addition, it revealed allelic recombination events, visible as regions of low allelic heterozygosity, enabling the lineage tracing of isolates. Interestingly, analyses of transcriptome and translatome data of genes with allele-specific premature termination codons point to the absence of a nonsense-mediated decay mechanism in trypanosomes. Taken together, this study delivers a reference quality allele-specific genome assembly of and demonstrates the importance of such assemblies for the study of gene expression control. We expect the new genome assembly will increase the awareness of allele-specific phenomena and provide a platform to investigate them.

摘要

迄今为止,大多数参考基因组代表一种嵌合一致序列,其中同源染色体被合并为一个序列。这种方法会产生序列假象并阻碍对等位基因特异性机制的分析。在此,我们报告了二倍体寄生虫的等位基因特异性基因组组装,并揭示了影响基因表达的等位基因变体。利用长读长测序和染色体构象捕获数据,我们能够将所有杂合变体的99.5%分配到特定的同源染色体上,并构建了一个66 Mb长的等位基因特异性基因组组装。单倍型的定相使我们能够解析先前嵌合一致组装中存在的数百个假象。此外,它还揭示了等位基因重组事件,表现为低等位基因杂合性区域,从而能够对分离株进行谱系追踪。有趣的是,对具有等位基因特异性提前终止密码子的基因的转录组和翻译组数据的分析表明,锥虫中不存在无义介导的衰变机制。综上所述,本研究提供了一个参考质量的等位基因特异性基因组组装,并证明了此类组装对于研究基因表达控制的重要性。我们期望新的基因组组装将提高对等位基因特异性现象的认识,并提供一个研究它们的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a1e/8445201/feed3bba5b38/lqab082fig1.jpg

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