Demultiplexing and barcode-specific adaptive sampling for nanopore direct RNA sequencing

W Wiep van der Toorn P Patrick Bohn W Wang Liu-Wei M Marco Olguin-Nava A Anne-Sophie Gribling-Burrer R Redmond P. Smyth M Max von Kleist

Abstract

Abstract Nanopore direct RNA sequencing (dRNA-seq) enables unique insights into RNA biology. However, applications are currently limited by the lack of accurate and cost-effective sample multiplexing. Here we introduce WarpDemuX, an ultra-fast and highly accurate adapter-barcoding and demultiplexing approach for dRNA-seq with SQK-RNA002 and SQK-RNA004 chemistries. WarpDemuX enhances speed and accuracy by fast processing of the raw nanopore signal, use of a light-weight machine-learning algorithm and design of optimized barcode sets. We demonstrate its utility by performing rapid phenotypic profiling of different SARS-CoV-2 viruses through multiplexed sequencing of longitudinal samples on a single flowcell, identifying systematic differences in transcript abundance and poly(A) tail lengths during infection. Additionally, integrating WarpDemuX into sequencing control software enables real-time enrichment of target molecules through barcode-specific adaptive sampling, which we demonstrate by enriching low abundance viral RNA. In summary, WarpDemuX represents a broadly applicable, high-performance, economical multiplexing solution for dRNA-seq, facilitating advanced (epi-) transcriptomic research.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 21, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

W

Wiep van der Toorn

P

Patrick Bohn

W

Wang Liu-Wei

M

Marco Olguin-Nava

A

Anne-Sophie Gribling-Burrer

R

Redmond P. Smyth

M

Max von Kleist