A primer for microbiome time-series analysis

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Date
2020-04-21
Authors
Coenen, Ashley R.
Hu, Sarah K.
Luo, Elaine
Muratore, Daniel
Weitz, Joshua S.
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DOI
10.3389/fgene.2020.00310
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Keywords
Microbial ecology
Time-series analysis
Marine microbiology
Inference
Clustering
Periodicity
Code:R
Code:matlab
Abstract
Time-series can provide critical insights into the structure and function of microbial communities. The analysis of temporal data warrants statistical considerations, distinct from comparative microbiome studies, to address ecological questions. This primer identifies unique challenges and approaches for analyzing microbiome time-series. In doing so, we focus on (1) identifying compositionally similar samples, (2) inferring putative interactions among populations, and (3) detecting periodic signals. We connect theory, code and data via a series of hands-on modules with a motivating biological question centered on marine microbial ecology. The topics of the modules include characterizing shifts in community structure and activity, identifying expression levels with a diel periodic signal, and identifying putative interactions within a complex community. Modules are presented as self-contained, open-access, interactive tutorials in R and Matlab. Throughout, we highlight statistical considerations for dealing with autocorrelated and compositional data, with an eye to improving the robustness of inferences from microbiome time-series. In doing so, we hope that this primer helps to broaden the use of time-series analytic methods within the microbial ecology research community.
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© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Coenen, A. R., Hu, S. K., Luo, E., Muratore, D., & Weitz, J. S. A primer for microbiome time-series analysis. Frontiers in Genetics, 11, (2020): 310, doi:10.3389/fgene.2020.00310.
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Coenen, A. R., Hu, S. K., Luo, E., Muratore, D., & Weitz, J. S. (2020). A primer for microbiome time-series analysis. Frontiers in Genetics, 11, 310.
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Except where otherwise noted, this item's license is described as Attribution 4.0 International