Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Waste Not, Want Not: Why Rarefying Microbiome Data Is Inadmissible

作者:Paul J. McMurdie, Susan Holmes · 发表于:PLoS Computational Biology · 年份:2014 · DOI:10.1371/journal.pcbi.1003531 · 被引用次数:3153 · 研究领域:Gut microbiota and health、Bayesian Methods and Mixture Models、Metabolomics and Mass Spectrometry Studies

Current practice in the normalization of microbiome count data is inefficient in the statistical sense. For apparently historical reasons, the common approach is either to use simple proportions (which does not address heteroscedasticity) or to use rarefying of counts, even though both of these approaches are inappropriate for detection of differentially abundant species. Well-established statistical theory is available that simultaneously accounts for library size differences and biological variability using an appropriate mixture model. Moreover, specific implementations for DNA sequencing read count data (based on a Negative Binomial model for instance) are already available in RNA-Seq focused R packages such as edgeR and DESeq. Here we summarize the supporting statistical theory and use simulations and empirical data to demonstrate substantial improvements provided by a relevant mixture model framework over simple proportions or rarefying. We show how both proportions and rarefied counts result in a high rate of false positives in tests for species that are differentially abundant across sample classes. Regarding microbiome sample-wise clustering, we also show that the rarefying procedure often discards samples that can be accurately clustered by alternative methods. We further compare different Negative Binomial methods with a recently-described zero-inflated Gaussian mixture, implemented in a package called metagenomeSeq. We find that metagenomeSeq performs well when th...