Genomic deletions and rearrangements in monkeypox virus from the 2022 outbreak, USA
Gigante, C. M.; Plumb, M.; Ruprecht, A.; Zhao, H.; Wicker, V.; Wilkins, K.; Matheny, A.; Khan, T.; Davidson, W.; Sheth, M.; Burgin, A.; Burroughs, M.; Padilla, J.; Lee, J. S.; Dhwani, B.; Hetrick, E. E.; Howard, D. T.; Garfin, J.; Tate, L.; Hubsmith, S. J.; Mendoza, R. M.; Stanek, D.; Gillani, S.; Lee, M.; Mangla, A.; Blythe, D.; Sierra-Patev, S.; Carpenter-Azevedo, K.; Huard, R. C.; Gallagher, G.; Hall, J.; Ash, S.; Kovar, L.; Seabolt, M. H.; Weigand, M. R.; Damon, I.; Satheshkumar, P. S.; McCollum, A. M.; Hutson, C. L.; Wang, X.; Li, Y.
Show abstract
Genomic surveillance of monkeypox virus (MPXV) during the 2022 outbreak has been mainly focused on single nucleotide polymorphism (SNP) changes. DNA viruses, including MPXV, have a lower SNP mutation rate than RNA viruses due to higher fidelity replication machinery. We identified a large genomic rearrangement in a MPXV sequence from a 2022 case in the state of Minnesota (MN), USA, from an abnormal, uneven MPXV read mapping coverage profile in whole-genome sequencing (WGS) data. We further screened WGS data of 206 U.S. MPXV samples and found seven (3.4 percent) sequenced genomes contained similar abnormal read coverage profiles that suggested putative large deletions or genomic rearrangements. Here, we present three MPXV genomes containing deletions ranging from 2.3 to 15 kb and four genomes containing more complex rearrangements. Five genomic changes were each only seen in one sample, but two sequences from linked cases shared an identical 2.3 kb deletion in the 3 terminal region. All samples were positive using VAC1 and Clade II (formerly West African)-specific MPXV diagnostic tests; however, large deletions and genomic rearrangements like the ones reported here have the potential to result in viruses in which the target of a PCR diagnostic test is deleted. The emergence of genomic rearrangements during the outbreak may have public health implications and highlight the importance of continued genomic surveillance.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Diving Deep into Fish Bornaviruses: Uncovering Hidden Diversity and Transcriptional Strategies through Comprehensive Data Mining 96%
- Frequent intergenotypic recombination between the non-structural and structural genes is a major driver of epidemiological fitness in caliciviruses 95%
- Begomovirus species demarcation based on genome-sequence identity often yields non-monophyletic species: A case study of sweet potato-infecting begomoviruses 95%
Similar papers in this journal
- Taxonomic classification methods reveal a new subgenus in the paramyxovirus subfamily Orthoparamyxovirinae 97%
- Genetic Insights into the Microevolutionary Dynamics and Early Introductions of Human Monkeypox Virus in Mexico 96%
- Two novel flavi-like viruses shed light on the plant infecting koshoviruses 95%
Similar papers in this journal
- Feline leukemia virus (FeLV) endogenous and exogenous recombination events result in multiple FeLV-B subtypes during natural infection 96%
- In vivo generation of BK and JC polyomavirus defective viral genomes in human urine samples associated with higher viral loads 95%
- Endogenous feline leukemia virus siRNA transcription may interfere with exogenous FeLV infection 95%
Similar papers in this journal
- Hybrid sequencing reveals the genome of a Chrysochromulina parva virus and highlight its distinct replication strategy 94%
- Dengue Virus Surveillance in Nepal Yields the First On-Site Whole Genome Sequences of Isolates from the 2022 Outbreak 94%
- Unravelling Genomic Origin of Lumpy Skin Disease Virus in Recent Outbreaks 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.