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selscan: An Efficient Multithreaded Program to Perform EHH-Based Scans for Positive Selection

机译:selscan:一个有效的多线程程序,可以执行基于EHH的扫描以进行肯定选择

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摘要

Haplotype-based scans to detect natural selection are useful to identify recent or ongoing positive selection in genomes. As both real and simulated genomic data sets grow larger, spanning thousands of samples and millions of markers, there is a need for a fast and efficient implementation of these scans for general use. Here, we present selscan, an efficient multithreaded application that implements Extended Haplotype Homozygosity (EHH), Integrated Haplotype Score (iHS), and Cross-population EHH (XPEHH). selscan accepts phased genotypes in multiple formats, including TPED, and performs extremely well on both simulated and real data and over an order of magnitude faster than existing available implementations. It calculates iHS on chromosome 22 (22,147 loci) across 204 CEU haplotypes in 353 s on one thread (33 s on 16 threads) and calculates XPEHH for the same data relative to 210 YRI haplotypes in 578 s on one thread (52 s on 16 threads). Source code and binaries (Windows, OSX, and Linux) are available at https://github.com/szpiech/selscan.
机译:基于单倍型的扫描以检测自然选择对于鉴定基因组中最近或正在进行的阳性选择非常有用。随着真实和模拟的基因组数据集越来越大,跨越成千上万个样本和数百万个标记,需要快速,高效地实现这些扫描以用于一般用途。在这里,我们介绍selscan,这是一个高效的多线程应用程序,可实现扩展单倍型纯合性(EHH),综合单倍型评分(iHS)和跨群体EHH(XPEHH)。 selscan接受包括TPED在内的多种格式的分相基因型,并且在模拟数据和实际数据上均表现出色,并且比现有可用实现快一个数量级。它在一个线程上的353 s(16线程的33 s)中的204个CEU单倍型上计算22号染色体(22,147个基因座)的iHS并针对一个数据在578 s的210个YRI单倍型中计算相同数据的XPEHH(16个线程上的52 s)线程)。源代码和二进制文件(Windows,OSX和Linux)可从https://github.com/szpiech/selscan获得。

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