Full text 2025

Structural variation in 1,019 diverse humans based on long-read sequencing

Schloissnig S, Pani S, Ebler J, et al.

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Abstract

Genomic structural variants (SVs) contribute substantially to genetic diversity and human diseases<sup>1-4</sup>, yet remain under-characterized in population-scale cohorts<sup>5</sup>. Here we conducted long-read sequencing<sup>6</sup> in 1,019 humans to construct an intermediate-coverage resource covering 26 populations from the 1000 Genomes Project. Integrating linear and graph genome-based analyses, we uncover over 100,000 sequence-resolved biallelic SVs and we genotype 300,000 multiallelic variable number of tandem repeats<sup>7</sup>, advancing SV characterization over short-read-based population-scale surveys<sup>3,4</sup>. We characterize deletions, duplications, insertions and inversions in distinct populations. Long interspersed nuclear element-1 (L1) and SINE-VNTR-Alu (SVA) retrotransposition activities mediate the transduction<sup>8,9</sup> of unique sequence stretches in 5' or 3', depending on source mobile element class and locus. SV breakpoint analyses point to a spectrum of homology-mediated processes contributing to SV formation and recurrent deletion events. Our open-access resource underscores the value of long-read sequencing in advancing SV characterization and enables guiding variant prioritization in patient genomes.