Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2
Умеренная оценка изменения кратности и дисперсии для данных RNA-seq с помощью DESeq2
2014-12-05
SCID: 54.1/6ek4pyxv
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DESeq2differential analysis of count datadispersion estimationfold change estimationshrinkage estimation
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Abstract (AI)
In comparative high-throughput sequencing assays, a fundamental task is the analysis of count data, such as read counts per gene in RNA-seq, for evidence of systematic changes across experimental conditions. Small replicate numbers, discreteness, large dynamic range and the presence of outliers require a suitable statistical approach. We present DESeq2, a method for differential analysis of count data, using shrinkage estimation for dispersions and fold changes to improve stability and interpretability of estimates. This enables a more quantitative analysis focused on the strength rather than the mere presence of differential expression. The DESeq2 package is available at http://www.bioconductor.org/packages/release/bioc/html/DESeq2.html webcite.
Key Findings
1
DESeq2 addresses challenges from outliers, small sample sizes, discreteness, and large dynamic range in high-throughput sequencing count data.
2
DESeq2 enables more quantitative analyses focused on effect size (strength of differential expression) rather than only presence/absence of differential expression.
3
DESeq2 performs differential analysis of count data (e.g., RNA-seq read counts) using shrinkage estimation for dispersions and fold changes.
4
Shrinkage estimation in DESeq2 improves stability and interpretability of dispersion and fold-change estimates, especially with small replicate numbers and discrete, high-dynamic-range data.
Research Object
RNA-seq gene read count data from comparative high-throughput sequencing experiments
Research Subject
Moderated estimation (shrinkage) of fold changes and dispersion for differential analysis of count data to improve stability and interpretability of differential expression results
Publication Details
Publication Date
2014-12-05
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