Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 510
Filter
1.
Arch Virol ; 169(9): 184, 2024 Aug 21.
Article in English | MEDLINE | ID: mdl-39167240

ABSTRACT

Family Smacoviridae (order Cremevirales, class Arfiviricetes, phylum Cressdnaviricota) comprises viruses with small circular genomes of ~2300-3000 nt in length that encode at least two proteins, the rolling-circle replication associated protein (Rep) and the capsid protein (CP). Smacovirids have been discovered in fecal samples of various animals and display remarkable sequence diversity. Here, we provide an overview of the genomic properties of classified smacovirids and report on the latest taxonomy update in the family Smacoviridae. The family has been expanded by 59 new species in the genera Porprismacovirus (n = 25), Inpeasmacovirus (n = 1), Felismacovirus (n = 22), Drosmacovirus (n = 4), Dragsmacovirus (n = 2), Bovismacovirus (n = 4), and Bonzesmacovirus (n = 1) and currently includes 12 genera with 143 species officially recognized by the International Committee on Taxonomy of Viruses (ICTV).


Subject(s)
Genome, Viral , Phylogeny , Genome, Viral/genetics , Animals , Feces/virology , DNA Viruses/genetics , DNA Viruses/classification , Capsid Proteins/genetics , Viral Proteins/genetics
2.
J Virol Methods ; 329: 115005, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39128772

ABSTRACT

Zoonotic viruses are widely seen as the primary threat for future pandemics. Bats are the most diverse group of mammals, with more than 1400 species distributed across most habitats on Earth. So far, 31 known virus families were associated with bats, although the understanding of most viruses were insufficient. Continuous efforts to discover, understand and monitor these bats viruses, is thereby an area of public health interest. This systematic review was designed to catalogue publications reporting novel bat virus discoveries within PubMed, SCOPUS, and Web of Science databases, within a 5-year period from 2018 to 2022. Various experimental parameters, including sampling locations, methodology, bat species diversity, similarity to known viruses, species demarcation of new viruses, and genomic sequencing strategies, were extracted from 41 publications and analyzed. In total, 72 novel viruses from 19 virus families were identified between 2018 and 2022, particularly from Genomoviridae (DNA viruses) and Coronaviridae (RNA viruses). That said, only a limited number of bat families featured extensively despite noticeable shift towards next generation sequencing methods and metagenomics pipeline for virus identification across different sampling methods. This review aims to provide a comprehensive analysis of the global efforts made over the past five years to identify and characterize emerging viruses in bat species, and to provide a detailed overview of the current technologies and methodologies used in these studies.


Subject(s)
Chiroptera , Metagenomics , Chiroptera/virology , Animals , Metagenomics/methods , High-Throughput Nucleotide Sequencing , Viruses/classification , Viruses/genetics , Viruses/isolation & purification , Genome, Viral , RNA Viruses/genetics , RNA Viruses/classification , RNA Viruses/isolation & purification , Phylogeny , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification , Virus Diseases/virology , Virus Diseases/veterinary , Viral Zoonoses/virology
3.
Viruses ; 16(8)2024 Aug 16.
Article in English | MEDLINE | ID: mdl-39205279

ABSTRACT

The potato leafhopper (Empoasca fabae, PLH) is a serious pest that feeds on a wide range of agricultural crops and is found throughout the United States but is not known to be a vector for plant-infecting viruses. We probed the diversity of virus sequences in field populations of PLH collected from four Midwestern states: Illinois, Indiana, Iowa, and Minnesota. High-throughput sequencing data from total RNAs extracted from PLH were used to assemble sequences of fifteen positive-stranded RNA viruses, two negative-stranded RNA viruses, and one DNA virus. These sequences included ten previously described plant viruses and eight putative insect-infecting viruses. All but one of the insect-specific viruses were novel and included three solemoviruses, one iflavirus, one phenuivirus, one lispivirus, and one ambidensovirus. Detailed analyses of the novel genome sequences and their evolutionary relationships with related family members were conducted. Our study revealed a diverse group of plant viruses circulating in the PLH population and discovered novel insect viruses, expanding knowledge on the untapped virus diversity in economically important crop pests. Our findings also highlight the importance of monitoring the emergence and circulation of plant-infecting viruses in agriculturally important arthropod pests.


Subject(s)
Genome, Viral , Hemiptera , Phylogeny , Plant Viruses , Animals , Hemiptera/virology , Plant Viruses/genetics , Plant Viruses/classification , Plant Viruses/isolation & purification , Plant Diseases/virology , Plant Diseases/parasitology , Crops, Agricultural/virology , Insect Viruses/genetics , Insect Viruses/classification , Insect Viruses/isolation & purification , Solanum tuberosum/virology , Solanum tuberosum/parasitology , High-Throughput Nucleotide Sequencing , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification , RNA Viruses/genetics , RNA Viruses/classification , RNA Viruses/isolation & purification , Genetic Variation , Insect Vectors/virology
4.
J Med Virol ; 96(7): e29750, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38953413

ABSTRACT

The Phylum Cressdnaviricota consists of a large number of circular Rep-encoding single-stranded (CRESS)-DNA viruses. Recently, metagenomic analyzes revealed their ubiquitous distribution in a diverse range of eukaryotes. Data relating to CRESS-DNA viruses in humans remains scarce. Our study investigated the presence and genetic diversity of CRESS-DNA viruses in human vaginal secretions. Vaginal swabs were collected from 28 women between 29 and 43 years old attending a fertility clinic in New York City. An exploratory metagenomic analysis was performed and detection of CRESS-DNA viruses was confirmed through analysis of near full-length sequences of the viral isolates. A phylogenetic tree was based on the REP open reading frame sequences of the CRESS-DNA virus genome. Eleven nearly complete CRESS-DNA viral genomes were identified in 16 (57.1%) women. There were no associations between the presence of these viruses and any demographic or clinical parameters. Phylogenetic analysis indicated that one of the sequences belonged to the genus Gemycircularvirus within the Genomoviridae family, while ten sequences represented previously unclassified species of CRESS-DNA viruses. Novel species of CRESS-DNA viruses are present in the vaginal tract of adult women. Although they be transient commensal agents, the potential clinical implications for their presence at this site cannot be dismissed.


Subject(s)
DNA Viruses , Genome, Viral , Metagenomics , Phylogeny , Vagina , Humans , Female , Adult , Vagina/virology , Genome, Viral/genetics , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification , DNA, Viral/genetics , New York City , Sequence Analysis, DNA , Genetic Variation
5.
Vopr Virusol ; 69(3): 203-218, 2024 Jul 05.
Article in Russian | MEDLINE | ID: mdl-38996370

ABSTRACT

The basis for criteria of the taxonomic classification of DNA and RNA viruses based on data of the genomic sequencing are viewed in this review. The genomic sequences of viruses, which have genome represented by double-stranded DNA (orthopoxviruses as example), positive-sense single-stranded RNA (alphaviruses and flaviviruses as example), non-segmented negative-sense single-stranded RNA (filoviruses as example), segmented negative-sense single-stranded RNA (arenaviruses and phleboviruses as example) are analyzed. The levels of genetic variability that determine the assignment of compared viruses to taxa of various orders are established for each group of viruses.


Subject(s)
DNA Viruses , Genome, Viral , RNA Viruses , RNA Viruses/genetics , RNA Viruses/classification , DNA Viruses/genetics , DNA Viruses/classification , Phylogeny , Humans , Animals , Genomics/methods , RNA, Viral/genetics , Genetic Variation
6.
Viruses ; 16(7)2024 Jun 29.
Article in English | MEDLINE | ID: mdl-39066216

ABSTRACT

As part of a sea turtle health monitoring program on the central east coast of Queensland, Australia, stranded and sick green sea turtles (Chelonia mydas) were subjected to necropsy and histopathology. A subset of these turtles had myocarditis of varying severity, which could not be attributed to parasitism by spirorchid flukes or bacterial infections. We, therefore, undertook an investigation to determine whether virus infections might be part of the pathogenesis. Deep sequencing revealed abundant DNA virus contigs in the heart tissue, of which CRESS and circoviruses appeared to be the most consistently present. Further analysis revealed the homology of some of the circoviruses to the beak and feather disease virus. While a causative link to myocarditis could not be established, the presence of these viruses may play a contributing role by affecting the immune system and overall health of animals exposed to pollutants, higher water temperatures, and decreasing nutrition.


Subject(s)
DNA Viruses , Myocarditis , Turtles , Virome , Animals , Turtles/virology , Myocarditis/virology , Myocarditis/veterinary , DNA Viruses/genetics , DNA Viruses/isolation & purification , DNA Viruses/classification , Myocardium/pathology , DNA, Viral/genetics , Heart/virology , Phylogeny , High-Throughput Nucleotide Sequencing , Queensland
7.
J Infect Dis ; 230(1): 109-119, 2024 Jul 25.
Article in English | MEDLINE | ID: mdl-39052700

ABSTRACT

BACKGROUND: Cutavirus (CuV) is associated with mycosis fungoides; however, the CuV status in parapsoriasis en plaques (PP), a premalignant inflammatory condition of mycosis fungoides, has not been fully delineated. METHODS: Fifty-five Japanese patients with chronic inflammatory skin diseases, including 13 patients with PP, were studied. RESULTS: CuV DNA was detected significantly more frequently in biopsies of the lesional skin from patients with PP (38%; 4 of 13) than in those from patients with other inflammatory skin diseases (2%; 1 of 42; P = .009). All CuV-positive PP cases were of the large-plaque parapsoriasis (LPP) subtype. The viral loads ranged from 83 450 to 2 164 170 copies/103 cells. We recovered near-full-length CuV sequences from the CuV-positive LPP biopsies, all of which were of the Japanese/Asian genotype. The CuV genome appeared to be present within lymphoid cells infiltrating the epidermis and dermis. CuV NS1 and VP1 gene transcripts were also detected in the affected tissues. CONCLUSIONS: The detection of high levels of CuV DNA with the expression of viral mRNA suggests a potential role for CuV in the pathogenesis of LPP, making it necessary to study further the impact of CuV, especially regarding the viral genotype, on the outcomes of patients with CuV-positive LPP.


Subject(s)
Mycosis Fungoides , Parapsoriasis , Humans , Mycosis Fungoides/virology , Mycosis Fungoides/pathology , Male , Female , Middle Aged , Aged , Parapsoriasis/virology , Parapsoriasis/pathology , Adult , DNA, Viral/genetics , Skin/pathology , Skin/virology , Viral Load , Japan , Aged, 80 and over , Biopsy , Skin Neoplasms/virology , Skin Neoplasms/pathology , Precancerous Conditions/virology , Precancerous Conditions/pathology , DNA Viruses/genetics , DNA Viruses/isolation & purification , DNA Viruses/classification
8.
Microbiol Spectr ; 12(8): e0067524, 2024 Aug 06.
Article in English | MEDLINE | ID: mdl-38990026

ABSTRACT

Bats are natural hosts of multiple viruses, many of which have clear zoonotic potential. The search for emerging viruses has been aided by the implementation of metagenomic tools, which have also enabled the detection of unprecedented viral diversity. Currently, this search is mainly focused on RNA viruses, which are largely over-represented in databases. To compensate for this research bias, we analyzed fecal samples from 189 Spanish bats belonging to 22 different species using viral metagenomics. This allowed us to identify 52 complete or near-complete viral genomes belonging to the families Adenoviridae, Circoviridae, Genomoviridae, Papillomaviridae, Parvoviridae, Polyomaviridae and Smacoviridae. Of these, 30 could constitute new species, doubling the number of viruses currently described in Europe. These findings open the door to a more thorough analysis of bat DNA viruses and their zoonotic potential. IMPORTANCE: Metagenomics has become a fundamental tool to characterize the global virosphere, allowing us not only to understand the existing viral diversity and its ecological implications but also to identify new and emerging viruses. RNA viruses have a higher zoonotic potential, but this risk is also present for some DNA virus families. In our study, we analyzed the DNA fraction of fecal samples from 22 Spanish bat species, identifying 52 complete or near-complete genomes of different viral families with zoonotic potential. This doubles the number of genomes currently described in Europe. Metagenomic data often produce partial genomes that can be difficult to analyze. Our work, however, has characterized a large number of complete genomes, thus facilitating their taxonomic classification and enabling different analyses to be carried out to evaluate their zoonotic potential. For example, recombination studies are relevant since this phenomenon could play a major role in cross-species transmission.


Subject(s)
Chiroptera , DNA Viruses , Feces , Genome, Viral , Metagenomics , Phylogeny , Feces/virology , Animals , Chiroptera/virology , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification , Spain , Whole Genome Sequencing , Zoonoses/virology
9.
J Gen Virol ; 105(7)2024 Jul.
Article in English | MEDLINE | ID: mdl-38959058

ABSTRACT

The family Turriviridae includes viruses with a dsDNA genome of 16-17 kbp. Virions are spherical with a diameter of approximately 75 nm and comprise a host-derived internal lipid membrane surrounded by a proteinaceous capsid shell. Members of the family Turriviridae infect extremophilic archaea of the genera Sulfolobus and Saccharolobus. Viral infection results in cell lysis for Sulfolobus turreted icosahedral virus 1 infection but other members of the family can be temperate. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the family Turriviridae, which is available at ictv.global/report/turriviridae.


Subject(s)
DNA Viruses , Genome, Viral , Virion , DNA Viruses/classification , DNA Viruses/genetics , DNA Viruses/ultrastructure , Virion/ultrastructure , Archaeal Viruses/classification , Archaeal Viruses/genetics , Archaeal Viruses/ultrastructure , Archaeal Viruses/physiology , Sulfolobus/virology , Sulfolobus/genetics , DNA, Viral/genetics
10.
Arch Virol ; 169(6): 132, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38822903

ABSTRACT

Orpheoviruses, cedratviruses, and pithoviruses are large DNA viruses that cluster together taxonomically within the order Pimascovirales of the phylum Nucleocytoviricota. However, they were not classified previously by the International Committee on Taxonomy of Viruses (ICTV). Here, we present a comprehensive analysis of the gene content, morphology, and phylogenomics of these viruses, providing data that underpinned the recent proposal to establish new taxa for their initial classification. The new taxonomy, which has now been ratified by the ICTV, includes the family Orpheoviridae and genus Alphaorpheovirus, the family Pithoviridae and genus Alphapithovirus, and the family Cedratviridae and genus Alphacedratvirus, aiming to formally catalogue the isolates covered in this study. Additionally, as per the newly adopted rules, we applied standardized binomial names for the virus species created to classify isolates with complete genome sequences available in public databases at the time of the proposal. The specific epithet of each virus species was chosen as a reference to the location where the exemplar virus was isolated.


Subject(s)
DNA Viruses , Genome, Viral , Phylogeny , Genome, Viral/genetics , DNA Viruses/genetics , DNA Viruses/classification , DNA, Viral/genetics
11.
Viruses ; 16(6)2024 May 27.
Article in English | MEDLINE | ID: mdl-38932149

ABSTRACT

DNA viruses that produce persistent infections have been proposed as potential causes for the extinction of Neanderthals, and, therefore, the identification of viral genome remnants in Neanderthal sequence reads is an initial step to address this hypothesis. Here, as proof of concept, we searched for viral remnants in sequence reads of Neanderthal genome data by mapping to adenovirus, herpesvirus and papillomavirus, which are double-stranded DNA viruses that may establish lifelong latency and can produce persistent infections. The reconstructed ancient viral genomes of adenovirus, herpesvirus and papillomavirus revealed conserved segments, with nucleotide identity to extant viral genomes and variable regions in coding regions with substantial divergence to extant close relatives. Sequence reads mapped to extant viral genomes showed deamination patterns of ancient DNA, and these ancient viral genomes showed divergence consistent with the age of these samples (≈50,000 years) and viral evolutionary rates (10-5 to 10-8 substitutions/site/year). Analysis of random effects showed that the Neanderthal mapping to genomes of extant persistent viruses is above what is expected by random similarities of short reads. Also, negative control with a nonpersistent DNA virus does not yield statistically significant assemblies. This work demonstrates the feasibility of identifying viral genome remnants in archaeological samples with signal-to-noise assessment.


Subject(s)
DNA, Ancient , Genome, Viral , Neanderthals , Animals , Neanderthals/genetics , Neanderthals/virology , DNA, Ancient/analysis , Evolution, Molecular , DNA, Viral/genetics , Sequence Analysis, DNA/methods , Humans , Phylogeny , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification , Fossils/virology
12.
mBio ; 15(7): e0103524, 2024 Jul 17.
Article in English | MEDLINE | ID: mdl-38832788

ABSTRACT

The phylum Nucleocytoviricota consists of large and giant viruses that range in genome size from about 100 kilobases (kb) to more than 2.5 megabases. Here, using metagenome mining followed by extensive phylogenomic analysis and protein structure comparison, we delineate a distinct group of viruses with double-stranded (ds) DNA genomes in the range of 35-45 kb that appear to be related to the Nucleocytoviricota. In phylogenetic trees of the conserved double jelly-roll major capsid proteins (MCPs) and DNA packaging ATPases, these viruses do not show affinity to any particular branch of the Nucleocytoviricota and accordingly would comprise a class which we propose to name "Mriyaviricetes" (after Ukrainian "mriya," dream). Structural comparison of the MCP suggests that, among the extant virus lineages, mriyaviruses are the closest one to the ancestor of the Nucleocytoviricota. In the phylogenetic trees, mriyaviruses split into two well-separated branches, the family Yaraviridae and proposed new family "Gamadviridae." The previously characterized members of these families, yaravirus and Pleurochrysis sp. endemic viruses, infect amoeba and haptophytes, respectively. The genomes of the rest of the mriyaviruses were assembled from metagenomes from diverse environments, suggesting that mriyaviruses infect various unicellular eukaryotes. Mriyaviruses lack DNA polymerase, which is encoded by all other members of the Nucleocytoviricota, and RNA polymerase subunits encoded by all cytoplasmic viruses among the Nucleocytoviricota, suggesting that they replicate in the host cell nuclei. All mriyaviruses encode a HUH superfamily endonuclease that is likely to be essential for the initiation of virus DNA replication via the rolling circle mechanism. IMPORTANCE: The origin of giant viruses of eukaryotes that belong to the phylum Nucleocytoviricota is not thoroughly understood and remains a matter of major interest and debate. Here, we combine metagenome database searches with extensive protein sequence and structure analysis to describe a distinct group of viruses with comparatively small genomes of 35-45 kilobases that appear to comprise a distinct class within the phylum Nucleocytoviricota that we provisionally named "Mriyaviricetes." Mriyaviruses appear to be the closest identified relatives of the ancestors of the Nucleocytoviricota. Analysis of proteins encoded in mriyavirus genomes suggests that they replicate their genome via the rolling circle mechanism that is unusual among viruses with double-stranded DNA genomes and so far not described for members of Nucleocytoviricota.


Subject(s)
Genome, Viral , Giant Viruses , Phylogeny , Giant Viruses/genetics , Giant Viruses/classification , Genome, Viral/genetics , DNA Viruses/genetics , DNA Viruses/classification , Capsid Proteins/genetics , Capsid Proteins/chemistry , Metagenome , DNA, Viral/genetics
13.
mSphere ; 9(7): e0021924, 2024 Jul 30.
Article in English | MEDLINE | ID: mdl-38904383

ABSTRACT

Acute encephalitis syndrome (AES) causes significant morbidity and mortality worldwide. In Nepal, Japanese encephalitis virus (JEV) accounts for ~5-20% of AES cases, but ~75% of AES cases are of unknown etiology. We identified a gemykibivirus in CSF collected in 2020 from an 8-year-old male patient with AES using metagenomic next-generation sequencing. Gemykibiviruses are single stranded, circular DNA viruses in the family Genomoviridae. The complete genome of 2,211 nucleotides was sequenced, which shared 98.69% nucleotide identity to its closest relative, Human associated gemykibivirus 2 isolate SAfia-449D. Two real-time PCR assays were designed, and screening of 337 cerebrospinal fluid (CSF) and 164 serum samples from AES patients in Nepal collected in 2020 and 2022 yielded 11 CSF and 1 serum sample that were positive in both PCR assays. Complete genomes of seven of the positives were sequenced. These results identify a potential candidate etiologic agent of encephalitis in Nepal. IMPORTANCE: Viral encephalitis is a devastating disease, but unfortunately, worldwide, the causative virus in many cases is unknown. Therefore, it is important to identify viruses that could be responsible for cases of human encephalitis. Here, using metagenomic sequencing of CSF, we identified a gemykibivirus in a male child from Nepal with acute encephalitis syndrome (AES). We subsequently detected gemykibivirus DNA in CSF or serum of 12 more encephalitis patients by real-time PCR. The virus genomes we identified are highly similar to gemykibiviruses previously detected in CSF of three encephalitis patients from Sri Lanka. These results raise the possibility that gemykibivirus could be an underrecognized human pathogen.


Subject(s)
Genome, Viral , Phylogeny , Humans , Nepal/epidemiology , Male , Child , Genome, Viral/genetics , Metagenomics , High-Throughput Nucleotide Sequencing , Child, Preschool , Real-Time Polymerase Chain Reaction , Encephalitis, Viral/virology , Adolescent , DNA Viruses/genetics , DNA Viruses/isolation & purification , DNA Viruses/classification , Female
14.
Mol Ecol Resour ; 24(6): e13978, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38775206

ABSTRACT

Amplicon sequencing is an effective and increasingly applied method for studying viral communities in the environment. Here, we present vAMPirus, a user-friendly, comprehensive, and versatile DNA and RNA virus amplicon sequence analysis program, designed to support investigators in exploring virus amplicon sequencing data and running informed, reproducible analyses. vAMPirus intakes raw virus amplicon libraries and, by default, performs nucleotide- and amino acid-based analyses to produce results such as sequence abundance information, taxonomic classifications, phylogenies and community diversity metrics. The vAMPirus analytical framework leverages 16 different opensource tools and provides optional approaches that can increase the ratio of biological signal-to-noise and thereby reveal patterns that would have otherwise been masked. Here, we validate the vAMPirus analytical framework and illustrate its implementation as a general virus amplicon sequencing workflow by recapitulating findings from two previously published double-stranded DNA virus datasets. As a case study, we also apply the program to explore the diversity and distribution of a coral reef-associated RNA virus. vAMPirus is streamlined within Nextflow, offering straightforward scalability, standardization and communication of virus lineage-specific analyses. The vAMPirus framework is designed to be adaptable; community-driven analytical standards will continue to be incorporated as the field advances. vAMPirus supports researchers in revealing patterns of virus diversity and population dynamics in nature, while promoting study reproducibility and comparability.


Subject(s)
Software , Computational Biology/methods , DNA Viruses/genetics , DNA Viruses/classification , Viruses/genetics , Viruses/classification , Viruses/isolation & purification , RNA Viruses/genetics , RNA Viruses/classification , RNA Viruses/isolation & purification , Phylogeny
15.
Food Environ Virol ; 16(3): 1-22, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38647859

ABSTRACT

Viral metagenomics is a useful tool for detecting multiple human viruses in urban sewage. However, more refined protocols are required for its effective use in disease surveillance. In this study, we investigated the performance of three different preamplification pipelines (specific to RNA viruses, DNA viruses or both) for viral genome sequencing using spiked-in Phosphate Buffered Saline and sewage samples containing known concentrations of viruses. We found that compared to the pipeline targeting all genome types, the RNA pipeline performed better in detecting RNA viruses in both spiked and unspiked sewage samples, allowing the detection of various mammalian viruses including members from the Reoviridae, Picornaviridae, Astroviridae and Caliciviridae. However, the DNA-specific pipeline did not improve the detection of mammalian DNA viruses. We also measured viral recovery by quantitative reverse transcription polymerase chain reaction and assessed the impact of genetic background (non-viral genetic material) on viral coverage. Our results indicate that viral recoveries were generally lower in sewage (average of 11.0%) and higher in Phosphate Buffered Saline (average of 23.4%) for most viruses. Additionally, spiked-in viruses showed lower genome coverage in sewage, demonstrating the negative effect of genetic background on sequencing. Finally, correlation analysis revealed a relationship between virus concentration and genome normalized reads per million, indicating that viral metagenomic sequencing can be semiquantitative.


Subject(s)
Genome, Viral , Metagenomics , Sewage , Sewage/virology , Metagenomics/methods , RNA, Viral/genetics , Viruses/genetics , Viruses/isolation & purification , Viruses/classification , RNA Viruses/genetics , RNA Viruses/isolation & purification , RNA Viruses/classification , DNA, Viral/genetics , DNA Viruses/genetics , DNA Viruses/classification , DNA Viruses/isolation & purification
16.
J Virol ; 97(11): e0130023, 2023 Nov 30.
Article in English | MEDLINE | ID: mdl-37888981

ABSTRACT

IMPORTANCE: We report here efforts to benchmark performance of two widespread approaches for virome analysis, which target either virion-associated nucleic acids (VANA) or highly purified double-stranded RNAs (dsRNAs). This was achieved using synthetic communities of varying complexity levels, up to a highly complex community of 72 viral agents (115 viral molecules) comprising isolates from 21 families and 61 genera of plant viruses. The results obtained confirm that the dsRNA-based approach provides a more complete representation of the RNA virome, in particular, for high complexity ones. However, for viromes of low to medium complexity, VANA appears a reasonable alternative and would be the preferred choice if analysis of DNA viruses is of importance. Several parameters impacting performance were identified as well as a direct relationship between the completeness of virome description and sample sequencing depth. The strategy, results, and tools used here should prove useful in a range of virome analysis efforts.


Subject(s)
Metagenomics , Synthetic Biology , Virome , Viruses , DNA Viruses/classification , DNA Viruses/genetics , Metagenomics/methods , Metagenomics/standards , Virion/genetics , Virome/genetics , Synthetic Biology/methods , RNA, Double-Stranded/genetics , Viruses/classification , Viruses/genetics , Plant Viruses/classification , Plant Viruses/genetics
17.
Arch Virol ; 168(9): 223, 2023 Aug 10.
Article in English | MEDLINE | ID: mdl-37561218

ABSTRACT

The phylum Cressdnaviricota comprises viruses with single-stranded, circular DNA genomes that encode an HUH-type endonuclease (known as Rep). The phylum includes two classes, eight orders, and 11 families. Here, we report the creation of a twelfth family in the order Mulpavirales, class Arfiviricetes of the phylum Cressdnaviricota. The family Amesuviridae comprises viruses that infect plants and is divided into two genera: Temfrudevirus, including the species Temfrudevirus temperatum (with temperate fruit decay-associated virus as a member), and Yermavirus, including the species Yermavirus ilicis (with yerba mate-associated circular DNA virus as a member). Both viruses encode Rep proteins with HUH endonuclease and SH3 superfamily helicase domains. Phylogenetic analysis indicates that the replicative module of amesuviruses constitutes a well-supported monophyletic clade related to Rep proteins from viruses in the order Mulpavirales. Furthermore, both viruses encode a single capsid protein (CP) related to geminivirus CPs. Phylogenetic incongruence between the replicative and structural modules of amesuviruses suggests a chimeric origin resulting from remote recombination events between ancestral mulpavirales and geminivirids. The creation of the family Amesuviridae has been ratified by the International Committee on Taxonomy of Viruses (ICTV).


Subject(s)
DNA Viruses , Plant Viruses , DNA Viruses/classification , DNA Viruses/isolation & purification , DNA, Circular/genetics , DNA, Single-Stranded/genetics , Endonucleases/genetics , Geminiviridae/genetics , Genome, Viral/genetics , Phylogeny , Plant Viruses/genetics
18.
Nature ; 617(7960): 409-416, 2023 05.
Article in English | MEDLINE | ID: mdl-37138077

ABSTRACT

CrAssphage and related viruses of the order Crassvirales (hereafter referred to as crassviruses) were originally discovered by cross-assembly of metagenomic sequences. They are the most abundant viruses in the human gut, are found in the majority of individual gut viromes, and account for up to 95% of the viral sequences in some individuals1-4. Crassviruses are likely to have major roles in shaping the composition and functionality of the human microbiome, but the structures and roles of most of the virally encoded proteins are unknown, with only generic predictions resulting from bioinformatic analyses4,5. Here we present a cryo-electron microscopy reconstruction of Bacteroides intestinalis virus ΦcrAss0016, providing the structural basis for the functional assignment of most of its virion proteins. The muzzle protein forms an assembly about 1 MDa in size at the end of the tail and exhibits a previously unknown fold that we designate the 'crass fold', that is likely to serve as a gatekeeper that controls the ejection of cargos. In addition to packing the approximately 103 kb of virus DNA, the ΦcrAss001 virion has extensive storage space for virally encoded cargo proteins in the capsid and, unusually, within the tail. One of the cargo proteins is present in both the capsid and the tail, suggesting a general mechanism for protein ejection, which involves partial unfolding of proteins during their extrusion through the tail. These findings provide a structural basis for understanding the mechanisms of assembly and infection of these highly abundant crassviruses.


Subject(s)
DNA Viruses , Intestines , Viral Proteins , Virion , Humans , Capsid/chemistry , Capsid/metabolism , Capsid/ultrastructure , Cryoelectron Microscopy , DNA Viruses/chemistry , DNA Viruses/classification , DNA Viruses/isolation & purification , DNA Viruses/metabolism , DNA Viruses/ultrastructure , Virion/chemistry , Virion/metabolism , Virion/ultrastructure , Virus Assembly , Intestines/microbiology , Intestines/virology , Viral Proteins/chemistry , Viral Proteins/metabolism , Viral Proteins/ultrastructure , Protein Unfolding , Protein Folding
19.
Virology ; 565: 38-51, 2022 01 02.
Article in English | MEDLINE | ID: mdl-34715607

ABSTRACT

The South Island robin (Petroica australis) is a small passerine bird endemic to New Zealand (Aotearoa). Although its population has declined recently and it is considered 'at risk,' little research has been done to identify viruses in this species. This study aimed to survey the diversity of single-stranded DNA viruses associated with South Island robins in a small, isolated population on Nukuwaiata Island. In total, 108 DNA viruses were identified from pooled fecal samples collected from 38 individual robins sampled. These viruses belong to the Circoviridae (n = 10), Genomoviridae (n = 12), and Microviridae (n = 73) families. A number of genomes that belong to the phylum Cressdnaviricota but are otherwise unclassified (n = 13) were also identified. These results greatly expand the known viral diversity associated with South Island robins, and we identify a novel group of viruses most closely related genomoviruses.


Subject(s)
DNA Viruses/classification , Feces/virology , Songbirds/virology , Animals , DNA Viruses/genetics , DNA Viruses/isolation & purification , DNA, Single-Stranded , DNA, Viral , Genome, Viral , High-Throughput Nucleotide Sequencing , Microbiota , New Zealand , Phylogeny , Sequence Analysis, DNA
20.
J Gen Virol ; 102(12)2021 12.
Article in English | MEDLINE | ID: mdl-34928204

ABSTRACT

Over the last decade, viral metagenomics has been established as a non-targeted approach for identifying viruses in stock animals, including pigs. This has led to the identification of a vast diversity of small circular ssDNA viruses. The present study focuses on the investigation of eukaryotic circular Rep-encoding single-stranded (CRESS) DNA viral genomes present in serum of commercially reared pigs from southern Brazil. Several CRESS DNA viral genomes were detected, including representatives of the families Smacoviridae (n=5), Genomoviridae (n=3), Redondoviridae (n=1), Nenyaviridae (n=1) and other yet unclassified genomes (n=9), plus a circular DNA molecule, which probably belongs to the phylum Cressdnaviricota. A novel genus within the family Smacoviridae, tentatively named 'Suismacovirus', comprising 21 potential new species, is proposed. Although the reported genomes were recovered from pigs with clinical signs of respiratory disease, further studies should examine their potential role as pathogens. Nonetheless, these findings highlight the diversity of circular ssDNA viruses in serum of domestic pigs, expand the knowledge on CRESS DNA viruses' genetic diversity and distribution and contribute to the global picture of the virome of commercially reared pigs.


Subject(s)
DNA Viruses/classification , DNA Viruses/genetics , DNA, Single-Stranded , Genome, Viral , Swine/virology , Animals , Brazil , DNA, Circular/genetics , DNA, Viral/genetics , Eukaryotic Cells/virology , Metagenomics
SELECTION OF CITATIONS
SEARCH DETAIL