Improving long-read somatic structural variant calling with pangenome and de novo personal genome assembly

Accurate detection of mosaic and somatic structural variants (SVs) provides early diagnostic and therapeutic evidence for cancers. While long-read whole-genome sequencing leads to more accurate SV detection than short read sequencing, existing long-read SV callers only look at alignment against a single reference genome and are susceptible to systematic false discovery caused by germline differences between the individual genome and the reference genome. Here we develop a new SV filtering method that jointly considers the alignment against a pangenome and the de novo assembly of the germline genome. It dramatically reduces false positive mosaic and somatic SVs in cancer cell lines with little loss in sensitivity for existing long read SV callers. Our study highlights the essential need for pangenome or personal genome assembly to integrate SV calls for both SV discoveries and clinical diagnostics.

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Publication Details

Journal
Cancer Research Communications
Published
2026-09-04
DOI
https://doi.org/10.1158/2767-9764.crc-25-0769
Primary Topic
Cancer Genomics and Diagnostics
Type
article
Field-Weighted Citation Impact
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article

Improving long-read somatic structural variant calling with pangenome and de novo personal genome assembly

Qian Qin, Jakob Heinz, Heng Li
Cancer Research Communications
Cancer Genomics and Diagnostics
article

Improving long-read somatic structural variant calling with pangenome and de novo personal genome assembly

Qian Qin, Jakob Heinz, Heng Li
article en

Abstract

Accurate detection of mosaic and somatic structural variants (SVs) provides early diagnostic and therapeutic evidence for cancers. While long-read whole-genome sequencing leads to more accurate SV detection than short read sequencing, existing long-read SV callers only look at alignment against a single reference genome and are susceptible to systematic false discovery caused by germline differences between the individual genome and the reference genome. Here we develop a new SV filtering method that jointly considers the alignment against a pangenome and the de novo assembly of the germline genome. It dramatically reduces false positive mosaic and somatic SVs in cancer cell lines with little loss in sensitivity for existing long read SV callers. Our study highlights the essential need for pangenome or personal genome assembly to integrate SV calls for both SV discoveries and clinical diagnostics.

Cancer Research Communications
Dana-Farber Cancer Institute (US)
Openalex Percentile: Top 14%
Cancer Genomics and Diagnostics
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Improving long-read somatic structural variant calling with pangenome and de novo personal genome assembly — Qian Qin, Jakob Heinz, et al. · Cancer Research Communications (2026) | TGRS Research Map | TGRS