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ALCHEMY: a reliable method for automated SNP genotype calling for small batch sizes and highly homozygous populations

机译:ALCHEMY:一种可靠的自动SNP基因型方法,需要小批量和高度纯合的种群

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Motivation: The development of new high-throughput genotyping products requires a significant investment in testing and training samples to evaluate and optimize the product before it can be used reliably on new samples. One reason for this is current methods for automated calling of genotypes are based on clustering approaches which require a large number of samples to be analyzed simultaneously, or an extensive training dataset to seed clusters. In systems where inbred samples are of primary interest, current clustering approaches perform poorly due to the inability to clearly identify a heterozygote cluster.Results: As part of the development of two custom single nucleotide polymorphism genotyping products for Oryza sativa (domestic rice), we have developed a new genotype calling algorithm called 'ALCHEMY' based on statistical modeling of the raw intensity data rather than modelless clustering. A novel feature of the model is the ability to estimate and incorporate inbreeding information on a per sample basis allowing accurate genotyping of both inbred and heterozygous samples even when analyzed simultaneously. Since clustering is not used explicitly, ALCHEMY performs well on small sample sizes with accuracy exceeding 99% with as few as 18 samples.
机译:动机:开发新的高通量基因分型产品需要大量投资,用于测试和培训样品,以评估和优化该产品,然后才能将其可靠地用于新样品。原因之一是当前用于自动调用基因型的方法基于聚类方法,该方法需要同时分析大量样本或需要大量的训练数据集来进行种子聚类。在近交样本最受关注的系统中,由于无法清楚地识别杂合子簇,当前的聚类方法效果不佳。结果:作为开发两个用于水稻的定制单核苷酸多态性基因分型产品的一部分,我们基于原始强度数据的统计建模而不是无模型聚类,已经开发了一种称为“ ALCHEMY”的新基因型调用算法。该模型的新功能是能够基于每个样本估算和整合近交信息,即使同时进行分析,也能对近交和杂合样本进行准确的基因分型。由于未明确使用聚类,因此ALCHEMY在小样本量上表现良好,准确度超过99%,样本数最少为18个。

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