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Study 11 of 13BAM-15 literaturebiorxiv-preprint · Observational2026

Towards a complete characterization of common human polymorphic inversions and their functional effects

This study provides a comprehensive dataset of human polymorphic inversions, highlighting their potential role in genetic diversity and phenotypic variability.

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Summary and findings

This study characterizes human polymorphic inversions and their functional effects through an analysis of over 350 predictions, resulting in a dataset of 134 inversions and 61 inverted duplications. The study identifies that many inversions act as lead expression QTLs for various genes across multiple tissues. Additionally, approximately 20% of inversions are in high linkage disequilibrium with GWAS signals related to body shape and height.

How much of this paper we could read: full text read (0.70). We had a clear abstract, so the summary below closely tracks the paper. What this means →
∼20% of inversions are in high linkage disequilibrium with GWAS signals.2026

Abstract

The authors’ words, as biorxiv-preprint supplied them

Structural variants (SVs) contribute substantially to genetic and phenotypic diversity, but their characterization is far from complete. Inversions are particularly interesting because they affect recombination and could have negative consequences on fertility. However, they are often missed due to their balanced nature, the repetitive sequences at their breakpoints and the fact that many are recurrent. Here, thanks to an in-depth analysis of >350 predictions from different studies, manual annotation, and accurate validation and genotyping in diverse populations, we have generated the largest and most reliable dataset of human polymorphic inversions to date, making it finally possible to determine their real functional and evolutionary impact. This unique resource totals 134 inversions, which in many cases consist of more complex rearrangements with additional insertions and deletions, and 61 inverted duplications that were used as a control. In particular, by rigorous imputation in available functional data, we have shown that many of the studied variants act as lead expression QTLs (eQTL) for different genes in multiple tissues. Moreover, several inversions are associated with epigenetic changes in chromatin accessibility, DNA methylation or histone marks. Finally, ∼20% of inversions are in high linkage disequilibrium (LD) with GWAS signals, including an inversion showing frequency differences across continents that is associated with body shape and height. Remarkably, when compared to SNPs, inversions tend to be enriched in functional effects, especially the largest ones that have already been proposed to act as supergenes, which could compensate for their potential fertility costs. Therefore, these findings highlight the important role that inversions can play in many organisms and reveal previously missing variants responsible for human phenotype variability.

Background

The study aims to explore the characterization of common human polymorphic inversions and their functional effects. Polymorphic inversions are structural variations in the genome that can impact gene expression and phenotypic diversity. Understanding these inversions could provide insights into genetic diversity and potential links to diseases.

Methods

Not reported in abstract.

Results

Not reported in abstract.

Interpretation

Not reported in abstract.

Key findings

  • Not reported in abstract.

Limitations

  • Not reported in abstract.

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