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Rare variant testing across methods and thresholds using the multi-kernel sequence kernel association test (MK-SKAT)

机译:使用多内核序列内核关联测试(MK-SKAT)跨方法和阈值进行稀有变异测试

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摘要

Analysis of rare genetic variants has focused on region-based analysis wherein a subset of the variants within a genomic region is tested for association with a complex trait. Two important practical challenges have emerged. First, it is difficult to choose which test to use. Second, it is unclear which group of variants within a region should be tested. Both depend on the unknown true state of nature. Therefore, we develop the Multi-Kernel SKAT (MK-SKAT) which tests across a range of rare variant tests and groupings. Specifically, we demonstrate that several popular rare variant tests are special cases of the sequence kernel association test which compares pair-wise similarity in trait value to similarity in the rare variant genotypes between subjects as measured through a kernel function. Choosing a particular test is equivalent to choosing a kernel. Similarly, choosing which group of variants to test also reduces to choosing a kernel. Thus, MK-SKAT uses perturbation to test across a range of kernels. Simulations and real data analyses show that our framework controls type I error while maintaining high power across settings: MK-SKAT loses power when compared to the kernel for a particular scenario but has much greater power than poor choices.
机译:稀有遗传变异的分析集中于基于区域的分析,其中测试了基因组区域内变异的子集与复杂性状的关联。出现了两个重要的实际挑战。首先,很难选择要使用的测试。其次,尚不清楚应测试区域内的哪一组变体。两者都取决于未知的真实自然状态。因此,我们开发了Multi-Kernel SKAT(MK-SKAT),可对一系列罕见变体测试和分组进行测试。具体而言,我们证明了几种流行的稀有变异测试是序列内核关联测试的特例,该测试将特征值的成对相似性与通过内核功能测量的受试者之间的稀有变异基因型的相似性进行了比较。选择一个特定的测试等同于选择一个内核。同样,选择要测试的变体组也可以减少选择内核的过程。因此,MK-SKAT使用摄动来测试一系列内核。仿真和实际数据分析表明,我们的框架在控制I型错误的同时,还保持了跨设置的强大功能:在特定情况下,与内核相比,MK-SKAT失去了功耗,但其性能要比差的选择大得多。

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