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January 23, 2026Nature7 citationsOpen Access

Common variation in meiosis genes shapes human recombination and aneuploidy

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SCSara A. CariosciaABArjun BiddandaMSMargaret R. Starostik

Key Points

  • This research aims to explore the genetic factors influencing recombination rates and their relationship with aneuploidy during meiosis.
  • Retrospective analysis of pre-implantation genetic testing data from 139,416 in vitro fertilized embryos.
  • Tracing transmission of haplotypes to identify crossover events and aneuploid chromosomes.
  • Analyzing associations between specific genetic variants and crossover counts with a focus on meiotic genes.
  • Identified 3,809,412 crossovers and 92,485 aneuploid chromosomes, with lower crossover counts in aneuploid embryos.
  • Found a significant association between common haplotypes at the SMC1B locus and both crossover count and meiotic aneuploidy.
  • Evidence of secondary associations between variants linked to aneuploidy and recombination, as well as reproductive ageing traits.

Abstract

Abstract The leading cause of human pregnancy loss is aneuploidy, often tracing to errors in chromosome segregation during female meiosis 1,2 . Although abnormal crossover recombination is known to confer risk for aneuploidy 3,4 , limited data have hindered understanding of the potential shared genetic basis of these key molecular phenotypes. To address this gap, we performed retrospective analysis of pre-implantation genetic testing data from 139,416 in vitro fertilized embryos from 22,850 sets of biological parents. By tracing transmission of haplotypes, we identified 3,809,412 crossovers, as well as 92,485 aneuploid chromosomes. Counts of crossovers were lower in aneuploid versus euploid embryos, consistent with their role in chromosome pairing and segregation. Our analyses further revealed that a common haplotype spanning the meiotic cohesin SMC1B is associated significantly with both crossover count and maternal meiotic aneuploidy, with evidence supporting a non-coding cis -regulatory mechanism. Transcriptome- and phenome-wide association tests also implicated variation in the synaptonemal complex component C14orf39 and crossover-regulating ubiquitin ligases CCNB1IP1 and RNF212 in meiotic aneuploidy risk. More broadly, variants associated with aneuploidy often showed secondary associations with recombination, and several also exhibited associations with reproductive ageing traits. Our findings highlight the dual role of recombination in generating genetic diversity, while ensuring meiotic fidelity.

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Cite This Study

Carioscia et al. (2026) studied this question.

synapsesocial.com/papers/69731089c8125b09b0d20407https://doi.org/10.1038/s41586-025-09964-2
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Meiotic recombination and chromosome-specific differences in spontaneous nondisjunction2026
  2. 2Insights into non-crossover recombination from long-read sperm sequencing2024 · 7 citations
  3. 3Chromosome-specific differences in the recombination landscape of spontaneous meiotic nondisjunction2026 · 1 citations
  4. 4Maternal genetic variants associated with aneuploid conception: a narrative review2026
  5. 5Recent advances in mechanisms ensuring the pairing, synapsis and segregation of XY chromosomes in mice and humans2024 · 3 citations