Article ID Journal Published Year Pages File Type
2039980 Cell Reports 2016 16 Pages PDF
Abstract

•Ultra-high temporal resolution RNA-seq reveals smooth expression trajectories•Absolute transcript measurements enable calculation of transcriptome kinetics•Transcript accumulation rates vary over eight orders of magnitude during development•Temporal synexpression and timescales distinguish gene functions

SummaryTranscript regulation is essential for cell function, and misregulation can lead to disease. Despite technologies to survey the transcriptome, we lack a comprehensive understanding of transcript kinetics, which limits quantitative biology. This is an acute challenge in embryonic development, where rapid changes in gene expression dictate cell fate decisions. By ultra-high-frequency sampling of Xenopus embryos and absolute normalization of sequence reads, we present smooth gene expression trajectories in absolute transcript numbers. During a developmental period approximating the first 8 weeks of human gestation, transcript kinetics vary by eight orders of magnitude. Ordering genes by expression dynamics, we find that “temporal synexpression” predicts common gene function. Remarkably, a single parameter, the characteristic timescale, can classify transcript kinetics globally and distinguish genes regulating development from those involved in cellular metabolism. Overall, our analysis provides unprecedented insight into the reorganization of maternal and embryonic transcripts and redefines our ability to perform quantitative biology.

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Life Sciences Agricultural and Biological Sciences Agricultural and Biological Sciences (General)
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