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Updated: Aug 6, 2026

Measuring Single-Cell Mitochondrial DNA Copy Number and Heteroplasmy Using Digital Droplet Polymerase Chain Reaction
Published on: July 12, 2022
Sperm Mitochondrial DNA Copy Number and Nuclear DNA Methylation Across Clinical and Non-Clinical Preconception
Savni Sawant1,2, Karolina Nowak2, Amanda L Paskavitz2,3
1Department of Biochemistry Microbiology, Immunology, School of Medicine, Wayne State University, Detroit, Michigan, USA.
Background:
Sperm mitochondrial DNA copy number is an emerging marker of male fertility, with elevated mtDNAcn associated with poor semen quality across various populations. Sperm DNA methylation has also been previously demonstrated to be negatively correlated with semen parameters in IVF cohorts.
Objective:
To determine whether mtDNAcn is associated with nuclear DNA methylation across three population-based and clinical fertility cohorts.
Design:
The association between sperm mtDNAcn and genome-wide DNA methylation was investigated in 748 men from a general population cohort (LIFE; n = 379) and two infertility cohorts (SEEDS; n = 170 and EARTH; n = 199). Sperm DNA methylation and mtDNAcn were quantified by the Illumina EPIC (v1) array and triplex probe-based digital PCR, respectively. Covariate-adjusted linear regressions were conducted within each cohort and then meta-analyzed using METAL. Gene ontology analyses explored the biological relevance of differentially methylated CpGs (DMCs) and regions (DMRs).
Results:
Using a Holm-Bonferroni significance threshold, our analyses identified 1351, 224, and 258 DMCs and 2582, 1536, and 1284 DMRs in LIFE, SEEDS, and EARTH, respectively, indicating that higher sperm mtDNAcn was associated with DNA hypermethylation. In meta-analysis, 576 DMCs were associated with mtDNAcn. Notably, the genes corresponding with DMCs and DMRs are known critical regulators of male fertility and were enriched in the regulation of male meiosis, germline protection, spermatogenesis pathways, and early embryonic development.
Discussion And Conclusion:
Our results, observed across three independent cohorts and supported by meta-analysis, indicate a consistent association between the sperm mitochondrial genome and nuclear DNA methylation, suggesting that mtDNAcn and methylation patterns may be linked during spermatogenesis. Further research is warranted to elucidate the mechanisms underlying these associations and to evaluate their relevance for reproductive outcomes.
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