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MALVA: Genotyping by Mapping-free ALlele Detection of Known VAriants

机译:MALVA:通过自由映射的等位基因检测已知变种的基因分型

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摘要

Summary: The amount of genetic variation discovered in human populations is growing rapidly leading to challenging computational tasks, such as variant calling. Standard methods for addressing this problem include read mapping, a computationally expensive procedure; thus, mapping-free tools have been proposed in recent years. These tools focus on isolated, biallelic SNPs, providing limited support for multi-allelic SNPs and short insertions and deletions of nucleotides (indels). Here we introduce MALVA, a mapping-free method to genotype an individual from a sample of reads. MALVA is the first mapping-free tool able to genotype multi-allelic SNPs and indels, even in high-density genomic regions, and to effectively handle a huge number of variants. MALVA requires one order of magnitude less time to genotype a donor than alignment-based pipelines, providing similar accuracy. Remarkably, on indels, MALVA provides even better results than the most widely adopted variant discovery tools. : Biological Sciences; Genetics; Genomics; Bioinformatics Subject Areas: Biological Sciences, Genetics, Genomics, Bioinformatics
机译:摘要:人群中发现的遗传变异量迅速增长,导致挑战计算任务,例如变体呼叫。解决此问题的标准方法包括读取映射,计算昂贵的过程;因此,近年来提出了免费工具。这些工具专注于隔离的双曲线SNP,为多个等位基因SNP和核苷酸的短插入和缺失提供有限的支持和核苷酸(Indels)。在这里,我们介绍了MALVA,从读取样本进行基因型映射的方法。 MALVA是一种能够对基因型多等位基因SNP和诱导的第一工具,即使在高密度的基因组区域中也是有效处理大量变体。 MALVA需要一个数量级的时间来基因型捐赠者而不是基于对准的管道,提供类似的准确性。值得注意的是,在Indels上,Malva提供了比最广泛采用的变体发现工具更好的结果。 : 生物科学;遗传学;基因组学;生物信息学主题领域:生物科学,遗传学,基因组学,生物信息学

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