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Degrees of differential gene expression: detecting biologically significant expression differences and estimating their magnitudes

机译:差异基因表达的程度:检测生物学上重要的表达差异并估算其大小

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Motivation: Many methods of identifying differential expression in genes depend on testing the null hypotheses of exactly equal means or distributions of expression levels for each gene across groups, even though a statistically significant difference in the expression level does not imply the occurrence of any difference of biological or clinical significance. This is because a mathematical definition of 'differential expression' as any non-zero difference does not correspond to the differential expression biologists seek. Furthermore, while some current methods account for multiple comparisons in hypothesis tests, they do not accordingly adjust estimates of the degrees to which genes are differentially expressed. Both problems lead to overstating the relevance of findings. Results: Testing whether genes have relevant differential expression can be accomplished with customized null hypotheses, thereby redefining ‘differential expression’ in a way that is more biologically meaningful. When such tests control the false discovery rate, they effectively discover genes based on a desired quantile of differential gene expression. Estimation of the degree to which genes are differentially expressed has been corrected for multiple comparisons.
机译:动机:许多鉴定基因差异表达的方法都依赖于检验每个基因在各组之间表达水平均值或分布完全相等的无效假设,即使表达水平的统计学差异并不意味着存在任何差异。生物学或临床意义。这是因为“差异表达”的数学定义是任何非零差异都不符合生物学家寻求的差异表达。此外,尽管某些当前方法在假设检验中考虑了多个比较,但它们并未相应地调整基因差异表达程度的估计。这两个问题都导致夸大结论的相关性。结果:测试基因是否具有相关的差异表达可以通过定制的无效假设完成,从而以更具生物学意义的方式重新定义“差异表达”。当此类测试控制错误发现率时,它们会根据所需的差异基因表达分位数有效地发现基因。基因差异表达的程度的估计已被校正以进行多次比较。

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