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TANDEM: integrating automated allele binning into genetics and genomics workflows

机译:TANDEM:将自动等位基因分箱整合到遗传和基因组学工作流程中

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Computer programs for the statistical analysis of microsatellite data use allele length variation to infer, e. g. population genetic parameters, to detect quantitative trait loci or selective sweeps. However, observed allele lengths are usually inaccurate and may deviate from the expected periodicity of repeats. The common practice of rounding to the nearest whole number frequently results in miscalls and underestimations of allelic richness. Manual sorting of allele lengths into discrete classes, a process called binning, is tedious and error-prone. Here, we present a new program for the automated binning of microsatellite allele lengths to overcome these problems and to facilitate high-throughput allele binning.
机译:用于微卫星数据统计分析的计算机程序使用等位基因长度变化来推断,例如。 G。群体遗传参数,以检测数量性状基因座或选择性扫描。但是,观察到的等位基因长度通常不准确,可能会偏离预期的重复周期。四舍五入到最接近的整数的常见做法经常会导致误认和对等位基因丰富度的低估。将等位基因长度手动分选为离散类(称为分箱)的过程既繁琐又容易出错。在这里,我们为微卫星等位基因长度的自动分箱提出了一个新程序,以克服这些问题并促进高通量等位基因分箱。

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