Baltica: integrated splice junction usage analysis
Britto-Borges, T.; Boehm, V.; Gehring, N. H.; Dieterich, C.
Show abstract
Alternative splicing is a tightly regulated co- and post-transcriptional process contributing to the transcriptome diversity observed in eukaryotes. Several methods for detecting differential junction usage (DJU) from RNA sequencing (RNA-seq) datasets exist. Yet, efforts to integrate the results from DJU methods are lacking. Here, we present Baltica, a framework that provides workflows for quality control, de novo transcriptome assembly with StringTie2, and currently 4 DJU methods: rMATS, JunctionSeq, Majiq, and LeafCutter. Baltica puts the results from different DJU methods into context by integrating the results at the junction level. We present Baltica using 2 datasets, one containing known artificial transcripts (SIRVs) and the second dataset of paired Illumina and Oxford Nanopore Technologies RNA-seq. The data integration allows the user to compare the performance of the tools and reveals that JunctionSeq outperforms the other methods, in terms of F1 score, for both datasets. Finally, we demonstrate for the first time that meta-classifiers trained on scores of multiple methods outperform classifiers trained on scores of a single method, emphasizing the application of our data integration approach for differential splicing identification. Baltica is available at https://github.com/dieterich-lab/Baltica under MIT license.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Comprehensive benchmark of differential transcript usage analysis for static and dynamic conditions 96%
- Tailored machine learning models for functional RNA detection in genome-wide screens 95%
- Kmerator Suite: design of specific k-mer signatures andautomatic metadata discovery in large RNA-Seq datasets. 95%
Similar papers in this journal
- CYCLeR - a novel tool for the full isoform assembly and quantification of circRNAs 96%
- Dividing out quantification uncertainty allows efficient assessment of differential transcript expression with edgeR 95%
- Dividing out quantification uncertainty enables assessment of differential transcript usage with limma and edgeR 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.