A Systematic Benchmark of High-Accuracy PacBio Long-Read RNA Sequencing for Transcript-Level Quantification
Wissel, D.; Mehlferber, M. M.; Nguyen, K. M.; Pavelko, V.; Tseng, E.; Robinson, M. D.; Sheynkman, G. M.
Show abstract
PacBio long-read RNA sequencing resolves transcripts with greater clarity than short-read technologies, yet its quantitative performance remains under-evaluated at scale. Here, we benchmark the high-throughput PacBio Kinnex platform against Illumina short-read RNA-seq using matched, deeply sequenced datasets across a time course of endothelial cell differentiation. Compared to Illumina, Kin-nex achieved comparable gene-level quantification and more accurate transcript discovery and transcript quantification. While Illumina detected more transcripts overall, many reflected potentially unstable or ambiguous estimates in complex genes. Kinnex largely avoids these issues, producing more reliable differential transcript expression (DTE) calls, despite a mild bias against short transcripts (shorter than 1.25 kb). When correcting Illumina for inferential variability, Kinnex and Illumina quantifications were highly concordant, demonstrating equivalent performance. We also benchmarked long-read tools, nominating Oarfish as the most efficient for our Kinnex data. Together, our results establish Kinnex as a reliable platform for full-length transcript quantification.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Normalisr: normalization and association testing for single-cell CRISPR screen and co-expression 95%
- On the discovery of population-specific state transitions from multi-sample multi-condition single-cell RNA sequencing data 95%
- Demultiplexing and barcode-specific adaptive sampling for nanopore direct RNA sequencing 95%
Similar papers in this journal
- Trans-NanoSim characterizes and simulates nanopore RNA-seq data 93%
- Genetic demultiplexing of pooled single-cell RNA-sequencing samples in cancer facilitates effective experimental design 93%
- The case for using Mapped Exonic Non-Duplicate (MEND) read counts in RNA-Seq experiments: examples from pediatric cancer datasets 93%
Similar papers in this journal
- SQANTI3: curation of long-read transcriptomes for accurate identification of known and novel isoforms 96%
- Enhanced recovery of single-cell RNA-sequencing reads for missing gene expression data 95%
- Uncalled4 improves nanopore DNA and RNA modification detection via fast and accurate signal alignment 95%
Similar papers in this journal
- Recursive splicing is a rare event in the mouse brain 93%
- Common tissue-specific expressions and regulatory mechanisms of c-KIT isoforms with and without GNNK and GNSK sequences across five mammals 93%
- Pooled PPIseq: screening the SARS-CoV-2 and human interface with a scalable multiplexed protein-protein interaction assay platform 92%
"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.