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MntJULiP and Jutils: differential splicing analysis of RNA-seq data with covariates
Wui Wang Lui1, Guangyu Yang1,2, Zitong He1
1Department of Computer Science, Johns Hopkins University, Baltimore, MD 21205, United States.
None:
Emerging large and complex RNA-seq datasets from disease and population studies include multiple confounders such as sex, age, ethnicity, and clinical attributes, which demand highly specialized data analysis tools. However, current methods are generally not equipped to handle the new challenges. We describe an extension of our programs MntJULiP and Jutils for differential splicing detection and visualization from RNA-seq data that accounts for covariates. MntJULiP detects intron-level differences in both splicing ratios and splicing abundance from RNA-seq data using a Bayesian linear mixture model adjusted for covariates. Jutils visualizes alternative variation with heatmaps, sashimi plots, Venn diagrams, and, reported here, PCA maps. With covariate modeling, MntJULiP drastically reduces false positives to achieve very high precision (>90%), significantly outperforming competitors. We applied the methods to GTEx brain RNA-seq samples to deconvolute the effects of sex and age at death on the splicing patterns. In particular, analyses of frontal cortex data reveal a pattern of increased splicing differences with more distant age groups, while clustering of covariate-adjusted data identifies a subgroup of individuals undergoing a distinct splicing program over the age span.
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