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March 10, 2026The American Journal of Human Genetics0 citationsOpen Access

Identification of de novo variants from parent-proband duos via long-read sequencing

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LBLeandros BoukasBoston Children's HospitalEDEmmanuèle C. DélotUniversity of California, IrvineGPGeorgia PitsavaUniversity of California, Irvine

Key Points

  • The aim is to develop a method to identify de novo variants from parent-proband duos when one parent is unavailable.
  • Utilized long-read sequencing with PacBio HiFi sequencing.
  • Developed duoNovo software for variant identification.
  • Constructed 208 duos by masking one parent from 104 trios.
  • Classified variants and assessed performance against full trios.
  • Achieved a positive predictive value of approximately 98% for de novo variant classification.
  • Demonstrated a sensitivity of about 55% for father-proband duos and 14% for mother-proband duos.
  • Increased sensitivity to ∼24% for mother-proband duos with a sibling's data.
  • Provided crucial diagnostic information for 2 probands in a cohort of 63 undiagnosed duos.

Abstract

While de novo variants cause many Mendelian disorders, their detection currently requires sequencing of the proband and both biological parents. This is not feasible when only one parent is available, a limitation for millions of families. Here, we develop duoNovo, which identifies de novo variants from parent-proband duos using long-read sequencing followed by haplotype reconstruction and detection of identical-by-descent haplotype blocks. We sequenced 104 trios with PacBio HiFi sequencing and applied duoNovo to each of the 208 duos constructed by masking one parent, classifying over 55 million variants according to their de novo status. We evaluated duoNovo's performance against classifications obtained using the full trios (which included over 10,000 de novo variants), finding a positive predictive value of ∼98% among variants absent from gnomAD and a sensitivity of approximately 55% from father-proband duos (73% of the biological upper limit) and 14% from mother-proband duos (56% of the biological upper limit), the latter increasing to ∼24% when a sibling is available. In a cohort of 63 undiagnosed duos, duoNovo provided critical diagnostic information for two probands. In summary, duoNovo has the potential to significantly increase the diagnostic yield of single-parent genetic testing and represents an example where long-read sequencing provides a clear benefit over short-read sequencing even for single-nucleotide variants. It is freely available as an R package.

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Cite This Study

Boukas et al. (2026) studied this question.

synapsesocial.com/papers/69af944f70916d39fea4b514https://doi.org/10.1016/j.ajhg.2026.02.006
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