De-heterogeneity of the eukaryotic viral reference database (EVRD) improves the accuracy and efficiency of viromic analysis
Chen, J.; Yan, X.; Sun, Y.; Ren, Z.; Yan, G.; Wang, G.; Liu, Y.; Zhao, Z.; Liu, Y.; Tu, C.; He, B.
Show abstract
Widespread in public databases, the notorious contamination in virus reference databases often leads to confusing even wrong conclusions in applications like viral disease diagnosis and viromic analysis, highlighting the need of a high-quality database. Here, we report the comprehensive scrutiny and the purification of the largest viral sequence collections of GenBank and UniProt by detection and characterization of heterogeneous sequences (HGSs). A total of 766 nucleotide- and 276 amino acid-HGSs were determined with length up to 6,605 bp, which were widely distributed in 39 families, with many involving highly public health-related viruses, such as hepatitis C virus, Crimea-Congo hemorrhagic fever virus and filovirus. Majority of these HGSs are sequences of a wide range of hosts including humans, with the rest resulting from vectors, misclassification and laboratory components. However, these HGSs cannot be simply considered as exotic contaminants, since part of which are resultants of natural occurrence or artificial engineering of the viruses. Nevertheless, they significantly disturb the genomic analysis, and hence were deleted from the database. A further augmentation was implemented with addition of the risk and vaccine sequences, which finally results in a high-quality eukaryotic virus reference database (EVRD). EVRD showed higher accuracy and less time-consuming without coverage compromise by reducing false positives than other integrated databases in viromic analysis. EVRD is freely accessible with favorable application in viral disease diagnosis, taxonomic clustering, viromic analysis and novel virus detection.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Indiscriminate activities of different Henipavirus polymerase complex proteins allow for efficient minigenome replication in hybrid systems 96%
- Evolution and Genetic Diversity of the Retroviral Envelope in Anamniotes 96%
- Bottleneck Size-Dependent Changes in the Genetic Diversity and Specific Growth Rate of a Rotavirus A Strain 96%
Similar papers in this journal
- Widespread distribution and evolution of poxviral entry-fusion complex proteins in giant viruses 96%
- Genetic diversity and characterization of circular replication(Rep)-encoding single-stranded (CRESS) DNA viruses 96%
- Functional analysis of promoter element 2 within the viral polymerase gene of an emerging paramyxovirus, Sosuga virus 96%
Similar papers in this journal
- Identification and classification of the genomes of novel Microviruses in a poultry slaughterhouse 98%
- The discovery of a recombinant SARS2-like CoV strain provides insights into SARS and COVID-2019 pandemics 96%
- Molecular Typing of Human Respiratory Adenoviruses with Universal PCR and Sequencing Primers for Three Major Capsid Genes: Penton base, Hexon, and Fiber 95%
Similar papers in this journal
- Ever-increasing viral diversity associated with the red imported fire ant Solenopsis invicta (Formicidae: Hymenoptera) 96%
- Genetic diversity and cross-species transmissibility of bat-associated picornaviruses from Spain 95%
- Virome and nrEVEome diversity of Aedes albopictus mosquitoes from La Reunion Island and China 94%
Similar papers in this journal
"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.