首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Perfect Match Genomic Landscape Provides a Unified Framework for the Precise Detection of Variation in Natural and Synthetic Haploid Genomes
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A Perfect Match Genomic Landscape Provides a Unified Framework for the Precise Detection of Variation in Natural and Synthetic Haploid Genomes

机译:一个完美的匹配基因组景观提供了一个统一的框架,用于精确地检测天然和合成单倍体基因组的变异

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摘要

We present a conceptually simple, sensitive, precise, and essentially nonstatistical solution for the analysis of genome variation in haploid organisms. The generation of a Perfect Match Genomic Landscape (PMGL), which computes intergenome identity with single nucleotide resolution, reveals signatures of variation wherever a query genome differs from a reference genome. Such signatures encode the precise location of different types of variants, including single nucleotide variants, deletions, insertions, and amplifications, effectively introducing the concept of a general signature of variation. The precise nature of variants is then resolved through the generation of targeted alignments between specific sets of sequence reads and known regions of the reference genome. Thus, the perfect match logic decouples the identification of the location of variants from the characterization of their nature, providing a unified framework for the detection of genome variation. We assessed the performance of the PMGL strategy via simulation experiments. We determined the variation profiles of natural genomes and of a synthetic chromosome, both in the context of haploid yeast strains. Our approach uncovered variants that have previously escaped detection. Moreover, our strategy is ideally suited for further refining high-quality reference genomes. The source codes for the automated PMGL pipeline have been deposited in a public repository.
机译:我们在概念上简单,敏感,精确,并且基本上是非静态的解决方案,用于分析单倍体生物的基因组变异。产生具有单一核苷酸分辨率的完美匹配基因组景观(PMGL),其揭示了Query基因组与参考基因组不同的变化签名。这些签名编码不同类型变体的精确位置,包括单一核苷酸变体,缺失,插入和放大,有效地引入变异的一般签名的概念。然后通过产生序列读取的特定序列读取和已知区域之间的靶向对准来解决变体的精确性。因此,完美的匹配逻辑与本质的表征中的变体的位置识别,为检测基因组变化提供统一的框架。我们通过仿真实验评估了PMGL策略的性能。我们确定了自然基因组和合成染色体的变化型材,无论是在单倍体酵母菌株的背景下。我们的方法未覆盖先前逃逸检测的变体。此外,我们的策略非常适合进一步精炼的高质量参考基因组。自动PMGL管道的源代码已存放在公共存储库中。

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