TY - JOUR
T1 - Ensilication preserves high-molecular weight native DNA for clinical long-read sequencing
AU - Undiagnosed Diseases Network
AU - Ferrasse, Alexis
AU - Mendez, Rodrigo
AU - Gorzynski, John E.
AU - Reuter, Chloe
AU - Carter, Jennefer N.
AU - Blas, Michael
AU - Jiang, Yong Hui
AU - Halstead, Winston
AU - Vasiliou, Vasilis
AU - Serrano, Teodoro Jerves
AU - Mane, Shrikant
AU - Kaufman, Odelya
AU - Derar, Nada
AU - Lek, Monkol
AU - Spencer-Manzon, Michele
AU - Gerstein, Mark
AU - Romero, María José Ortuño
AU - Jeffries, Lauren
AU - Zhang, Hui
AU - Xu, Hua
AU - Wang, Emily
AU - Hendry, Caroline
AU - Oladele, Carol
AU - Bale, Allen
AU - Schedl, Timothy
AU - Pak, Stephen C.
AU - Solnica-Krezel, Lilianna
AU - Shin, Jimann
AU - Baldridge, Dustin
AU - Cole, F. Sessions
AU - Dickson, Patricia
AU - Sisco, Kathy
AU - Wambach, Jennifer
AU - McRoy, Erin
AU - Wegner, Daniel
AU - Kiley, Dana
AU - Paul, Alex
AU - Cassini, Thomas
AU - Koziura, Mary
AU - Bastarache, Lisa
AU - Perera, Lakshitha
AU - Cogan, Joy D.
AU - Gamazon, Eric
AU - Shyr, Cathy
AU - Shuman, Saskia
AU - Balwani, Manisha
AU - Barbosa, Mafalda
AU - Jen, Joanna
AU - Cunningham-Rundles, Charlotte
AU - Gelb, Bruce
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/12
Y1 - 2026/12
N2 - Background: Native long-read DNA sequencing simultaneously captures genetic variants and epigenetic modifications from single molecules, but preserving molecular length and base modifications currently depends on cold-chain infrastructure that limits access to well-resourced settings. Results: We demonstrate that ensilication, the encapsulation of DNA within silica matrices, preserves DNA at ambient temperature for 30 days with sequencing performance equivalent to conventional − 80 °C freezing. Across three Genome-in-a-Bottle reference genomes, ensilicated and frozen samples show no significant differences in read length (N50 ~ 8,000–11,000 bp), variant-calling accuracy, or genome-wide CpG methylation. Single-read methylation calls benchmarked against an independent bisulfite-sequencing reference confirm that ensilication introduces no detectable bias, with per-read accuracy differing by less than 0.4% between preservation conditions. Ensilicated DNA tolerates repeated handling better than frozen samples and maintains fragment integrity under accelerated weathering. In two patients with rare genetic disorders, ambient-preserved DNA resolves a de novo variant in the segmentally duplicated GTF2I locus and detects methylation patterns consistent with KDM2A-related disorder. Conclusions: Ensilication enables diagnostic-quality native long-read sequencing without cold-chain infrastructure, supporting ambient storage and transport while preserving both sequence and methylation information.
AB - Background: Native long-read DNA sequencing simultaneously captures genetic variants and epigenetic modifications from single molecules, but preserving molecular length and base modifications currently depends on cold-chain infrastructure that limits access to well-resourced settings. Results: We demonstrate that ensilication, the encapsulation of DNA within silica matrices, preserves DNA at ambient temperature for 30 days with sequencing performance equivalent to conventional − 80 °C freezing. Across three Genome-in-a-Bottle reference genomes, ensilicated and frozen samples show no significant differences in read length (N50 ~ 8,000–11,000 bp), variant-calling accuracy, or genome-wide CpG methylation. Single-read methylation calls benchmarked against an independent bisulfite-sequencing reference confirm that ensilication introduces no detectable bias, with per-read accuracy differing by less than 0.4% between preservation conditions. Ensilicated DNA tolerates repeated handling better than frozen samples and maintains fragment integrity under accelerated weathering. In two patients with rare genetic disorders, ambient-preserved DNA resolves a de novo variant in the segmentally duplicated GTF2I locus and detects methylation patterns consistent with KDM2A-related disorder. Conclusions: Ensilication enables diagnostic-quality native long-read sequencing without cold-chain infrastructure, supporting ambient storage and transport while preserving both sequence and methylation information.
UR - https://www.scopus.com/pages/publications/105041978128
U2 - 10.1186/s13059-026-04137-4
DO - 10.1186/s13059-026-04137-4
M3 - Article
AN - SCOPUS:105041978128
SN - 1474-7596
VL - 27
JO - Genome Biology
JF - Genome Biology
IS - 1
M1 - 194
ER -