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Updated: May 23, 2026

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models
Published on: December 9, 2016
Detecting unannotated splicing events in short-read RNA-seq with SAMI, a UMI-aware Nextflow pipeline
Sylvain Mareschal1, Valentin Wucher1,2,3, Sarah Huet4,5,6
1Hospices Civils de Lyon, NGS-HCL plateform, Bioinformatics group, Lyon F-69000, France.
Summary:
Although RNA-sequencing has replaced microarrays for gene expression profiling over the past 15 years, its full potential for splicing analysis in clinical settings remains underexploited. Most available tools are tailored for large cohorts or known isoforms, limiting their applicability in routine diagnostics where non-recurring events must be identified in low-dimension datasets. We present SAMI (Splicing Analysis with Molecular Indexes), a fully-integrated UMI-aware pipeline designed to detect splicing events diverging from transcript annotations. Building upon the well-proven STAR aligner, SAMI introduces original post-processing of gaps and potential intron retention to maximize accuracy, along with clear graphical representations and tunable filtering stringency. The ability of SAMI and concurrent software to detect intragenic splicing aberrations and gene fusions was assessed, both on real data from a commercial control sample and simulated data generated with ASimulatoR.
Availability And Implementation:
Nextflow pipeline and Singularity container recipe freely available under GPL 3 license at https://github.com/HCL-HUBL/SAMI.
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