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Bacterial Viruses Subcommittee and Archaeal Viruses Subcommittee of the ICTV: update of taxonomy changes in 2021.

Mart Krupovic1, Dann Turner2, Vera Morozova3, Mike Dyall-Smith4, Hanna M Oksanen5, Rob Edwards6, Bas E Dutilh7, Susan M Lehman8, Alejandro Reyes9, Diana P Baquero1, Matthew B Sullivan10,11, Jumpei Uchiyama12, Jesca Nakavuma13, Jakub Barylski14, Mark J Young15, Shishen Du16, Poliane Alfenas-Zerbini17, Alla Kushkina18, Andrew M Kropinski19,20, Ipek Kurtböke21, J Rodney Brister22, Cédric Lood23, B L Sarkar24, Tong Yigang25, Ying Liu1, Li Huang26, Johannes Wittmann27, Nina Chanishvili28, Leonardo J van Zyl29, Janis Rumnieks30, Tomohiro Mochizuki31, Matti Jalasvuori32, Ramy K Aziz33, Małgorzata Łobocka34, Kenneth M Stedman35, Andrey N Shkoporov36, Annika Gillis37, Xu Peng38, François Enault39, Petar Knezevic40, Rob Lavigne23, Sung-Keun Rhee41, Virginija Cvirkaite-Krupovic1, Cristina Moraru42, Andrea I Moreno Switt43, Minna M Poranen5, Andrew Millard44, David Prangishvili45, Evelien M Adriaenssens46.   

Abstract

In this article, we - the Bacterial Viruses Subcommittee and the Archaeal Viruses Subcommittee of the International Committee on Taxonomy of Viruses (ICTV) - summarise the results of our activities for the period March 2020 - March 2021. We report the division of the former Bacterial and Archaeal Viruses Subcommittee in two separate Subcommittees, welcome new members, a new Subcommittee Chair and Vice Chair, and give an overview of the new taxa that were proposed in 2020, approved by the Executive Committee and ratified by vote in 2021. In particular, a new realm, three orders, 15 families, 31 subfamilies, 734 genera and 1845 species were newly created or redefined (moved/promoted).
© 2021. The Author(s).

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Year:  2021        PMID: 34417873      PMCID: PMC8497307          DOI: 10.1007/s00705-021-05205-9

Source DB:  PubMed          Journal:  Arch Virol        ISSN: 0304-8608            Impact factor:   2.574


Changes in Subcommittee structure and membership

Bacteriophage and archaeal virus taxonomy has been formally under the auspices of the ICTV Bacterial and Archaeal Viruses Subcommittee, which, at its inception in 1966, was named the Viruses of Prokaryotes Subcommittee, led by David E. Bradley (https://talk.ictvonline.org/information/w/ictv-history). Given the revived interest in bacterial and archaeal viruses and recent enormous increase in the number of characterized isolates and need for creation of numerous taxa to classify them, the Executive Committee (EC) voted on the creation of two separate Subcommittees (EC51, July 2019), formally starting their mandates after EC52 (October 2020). The new Bacterial Viruses Subcommittee is chaired by Evelien Adriaenssens, supported by Dann Turner as the Vice Chair, and the new Archaeal Viruses Subcommittee is chaired by Mart Krupovic. Both Chairs were elected for three-year terms ending in 2023. As a result, this taxonomy update summarises both bacterial and archaeal virus proposals for the last time, reflecting the fact that proposals were submitted prior to the formal reorganisation of the original Subcommittee. In the new Bacterial Viruses Subcommittee, we continue our structure of Study Groups (SGs), regional representatives and general members. We would like to welcome new members Jesca Nakavuma (Uganda), Alejandro Reyes (Colombia), Cristina Moraru (Germany), Susan Lehman (USA), Cédric Lood (Belgium) and Andrey Shkoporov (Ireland) and would like to thank those who have left the Subcommittee for their service. In the framework of the Bacterial and Archaeal Viruses Subcommittee, all taxonomic proposals dealing with archaeal viruses were handled by a single SG. The new Archaeal Viruses Subcommittee currently includes 11 SGs (Table 1), each created for a three-year term. Of note, the Halopanivirales SG, chaired by Hanna M. Oksanen (Finland), oversees the taxonomy of evolutionarily related viruses of the order Halopanivirales, which includes two families of viruses infecting archaea (Sphaerolipoviridae and Simuloviridae) and one family of bacteriophages (Matsushitaviridae). Thus, the latter SG bridges the two Subcommittees. Additional SGs will be created in the near future, in particular, to develop the taxonomy of archaeal members of the class Caudoviricetes; only a handful of isolated representatives of this highly diverse and expansive group of archaeal viruses are currently classified.
Table 1

Composition of the archaeal viruses subcommittee

Study GroupMemberCountry
Bicaudaviridae SGMart Krupovic*France
Li HuangChina
Mark J. YoungUSA
Virginija Cvirkaite-KrupovicFrance
Desulfurococcales viruses SGTomohiro Mochizuki*Japan
Mart KrupovicFrance
Fuselloviridae SGKenneth M. Stedman*USA
Mart KrupovicFrance
Halopanivirales SGHanna M. Oksanen*Finland
Mike Dyall-SmithAustralia
Shishen DuChina
Matti JalasvuoriFinland
Halspiviridae SGMike Dyall-Smith*Australia
Hanna M. OksanenFinland
Ovaliviridae SGLi Huang*China
Pleolipoviridae SGHanna M. Oksanen*Finland
Mike Dyall-SmithAustralia
Ying LiuFrance
Portogloboviridae SGMart Krupovic*France
Ying LiuFrance
Thaspiviridae SGSung-Keun Rhee*Republic of Korea
Mart KrupovicFrance
Tokiviricetes SGMart Krupovic*France
Tomohiro MochizukiJapan
Xu PengDenmark
Diana P. BaqueroFrance
Turriviridae SGMark J. Young*USA

*Study Group Chair

Composition of the archaeal viruses subcommittee *Study Group Chair

Taxonomy update

We had a record year of submissions of taxonomy proposals in 2020, with 188 proposals submitted, of which all but one were approved and ratified (Supplementary Table S1). The changes at each of the taxonomic ranks in use for bacterial and archaeal viruses are summarised in Table 2. We created a record 1775 new species, 700 new genera, 28 new subfamilies, 14 new families and two new orders and also created one new realm containing one new kingdom, one new phylum and one new class. Given the large numbers of proposals and taxa that were created, moved or renamed, it becomes unfeasible to describe all the changes in detail; however, we urge interested readers to consult Supplementary Table S1 and the associated proposals from the ICTV website (https://talk.ictvonline.org/files/ictv_official_taxonomy_updates_since_the_8th_report/m/prokaryote-official). Instead, below we provide a brief overview of the most notable changes.
Table 2

Summary of taxonomic changes for bacterial and archaeal viruses for Master Species List 36, ratified March 2021

SpeciesGenusSubfamilyFamilyOrderClassPhylumKingdomRealm
Abolished2020000000
New1775700281421111
Moved or promoted (and/or renamed)70343110000
Renamed3380111000
Summary of taxonomic changes for bacterial and archaeal viruses for Master Species List 36, ratified March 2021

The new realm Adnaviria, a new megataxonomy of archaeal filamentous viruses

Recently, the taxonomic framework of the ICTV has been expanded from five to 15 ranks, with the highest-level rank, realm, being equivalent to the domain rank used for cellular organisms [1]. Until recently, four such realms had been established for classification of viruses infecting hosts from different domains of life [2, 3]. This year, a new realm, Adnaviria, was created for classification of archaeal filamentous viruses with dsDNA genomes that adopt the A-form conformation within their virions [4, 5]. The realm includes three families, Tristromaviridae, Rudiviridae and Lipothrixviridae, which are evolutionarily related to each other, but not to any other known group of viruses. The families Rudiviridae and Lipothrixviridae were already grouped together in the order Ligamenvirales [6], and a single-family order, Primavirales, has now been created for the family Tristromaviridae. The two orders are unified in the class Tokiviricetes, kingdom Zilligvirae and realm Adnaviria.

Class Caudoviricetes, order Caudovirales

We delineated three new families of short-tailed phages with small genomes that were formerly assigned to the family Podoviridae. The family Salasmaviridae, named in honour of Margarita Salas Falgueras, comprises the existing subfamily Picovirinae, which includes the classical bacillus phage φ29 and a range of related Bacillus-infecting phages with genomes between 18 and 27 kb in size. The family Rountreeviridae, named in honour of Phyllis Margaret Rountree, groups Enterococcus-infecting phages with genomes between 17 and 19 kb in size, whereas the family Guelinviridae, named after Antonina Guelin, groups Clostridium-infecting phages with genome sizes between 16 and 19 kb. The new family Schitoviridae, named after Giancarlo Schito, is the formalisation of the group of N4-like phages defined by the presence of a large virion-associated RNA polymerase, described in more detail in reference [7]. The new family Zobellviridae, named after Claude Zobell, groups a set of globally distributed podoviruses associated with marine ecosystems first proposed by Bischoff and colleagues [8].

Class Leviviricetes

Based on the investigation by Callanan and colleagues on the expansion of known ssRNA virus genomes [9], the family Leviviridae was elevated to the rank of class, named Leviviricetes (replacing the class Allassoviricetes), and expanded to include two orders (Norzivirales and Timlovirales) and six new families: Fiersviridae (renamed from the original family Leviviridae), Atkinsviridae, Duinviridae, Solspiviridae, Blumeviridae and Steitzviridae. A detailed description of the new taxa will be published separately.

Class Tectiliviricetes, new family Autolykiviridae

The new family Autolykiviridae formalises the group of non-tailed dsDNA bacteriophages discovered and described by Kauffmann and colleagues [10], combining features of both corticoviruses and tectiviruses. This new family contains two new genera and five new species.

Order Halopanivirales, new families Matsushitaviridae and Simuloviridae

Until recently, the family Sphaerolipoviridae, which includes icosahedral tailless viruses with internal membranes, consisted of three genera, Alphasphaerolipovirus, Betasphaerolipovirus and Gammasphaerolipovirus. The first two of these genera included viruses infecting halophilic archaea, whereas the last one included phages infecting thermophilic bacteria [11]. Although viruses from the three genera are evolutionarily related [12], they display considerable sequence divergence. Thus, the genera Betasphaerolipovirus and Gammasphaerolipovirus have been renamed and moved from the Sphaerolipoviridae into new families, Simuloviridae and Matsushitaviridae (named after Isao Matsushita), respectively. The order Halopanivirales now contains a family of bacterial viruses, Matsushitaviridae, and two families of archaeal viruses, family Sphaerolipoviridae and Simuloviridae. As mentioned above, the order is under purview of a single Study Group, which is part of both the Archaeal Viruses SC and the Bacterial Viruses SC.

Order Tubulavirales, new family Paulinoviridae

The new family Paulinoviridae addresses the challenge of defining family demarcation criteria for phages with small genomes, where members of the same family would share at least two orthologous proteins. Informed by prior work on a gene-content network of predicted filamentous prophage sequences [13], we moved the genera Bifilivirus and Thomixvirus from the family Inoviridae to the family Paulinoviridae.

Online (10th) Report of the ICTV

Virus Taxonomy: The Classification and Nomenclature of Viruses - The Online (10th) Report of the ICTV is freely accessible at http://ictv.global/report, and summaries of the chapters on each virus family are published in the Journal of General Virology. In 2020, four new chapters on bacterial and archaeal viruses were produced by members of the Archaeal Viruses SC and Bacterial Viruses SC, namely, on the families Herelleviridae [14], Spiraviridae [15], Ovaliviridae [16] and Finnlakeviridae [17].

Conclusion

This past year has been extremely productive in terms of new bacterial and archaeal virus taxa described. It would not have been possible without an active pool of scientists, both within and outside the subcommittee and its study groups, who scour databases, perform analyses and submit proposals. We continue to encourage people to contact us to formalise new discoveries into the taxonomic framework and will keep reaching out to interested parties. Finally, we would like to acknowledge one person in particular, Prof Andrew Kropinski, the Subcommittee Chair from 2014-2020, who authored, co-authored and/or assisted with the majority of proposals that have been approved in the last decade. Below is the link to the electronic supplementary material. Supplementary file1 (PDF 175 KB)
  17 in total

1.  A new proposed taxon for double-stranded DNA viruses, the order "Ligamenvirales".

Authors:  David Prangishvili; Mart Krupovic
Journal:  Arch Virol       Date:  2012-01-22       Impact factor: 2.574

2.  A major lineage of non-tailed dsDNA viruses as unrecognized killers of marine bacteria.

Authors:  Kathryn M Kauffman; Fatima A Hussain; Joy Yang; Philip Arevalo; Julia M Brown; William K Chang; David VanInsberghe; Joseph Elsherbini; Radhey S Sharma; Michael B Cutler; Libusha Kelly; Martin F Polz
Journal:  Nature       Date:  2018-01-24       Impact factor: 49.962

3.  Gammasphaerolipovirus, a newly proposed bacteriophage genus, unifies viruses of halophilic archaea and thermophilic bacteria within the novel family Sphaerolipoviridae.

Authors:  Alice Pawlowski; Ilona Rissanen; Jaana K H Bamford; Mart Krupovic; Matti Jalasvuori
Journal:  Arch Virol       Date:  2014-01-07       Impact factor: 2.574

4.  Structure and assembly of archaeal viruses.

Authors:  Diana P Baquero; Ying Liu; Fengbin Wang; Edward H Egelman; David Prangishvili; Mart Krupovic
Journal:  Adv Virus Res       Date:  2020-10-05       Impact factor: 9.937

5.  Changes to virus taxonomy and the Statutes ratified by the International Committee on Taxonomy of Viruses (2020).

Authors:  Peter J Walker; Stuart G Siddell; Elliot J Lefkowitz; Arcady R Mushegian; Evelien M Adriaenssens; Donald M Dempsey; Bas E Dutilh; Balázs Harrach; Robert L Harrison; R Curtis Hendrickson; Sandra Junglen; Nick J Knowles; Andrew M Kropinski; Mart Krupovic; Jens H Kuhn; Max Nibert; Richard J Orton; Luisa Rubino; Sead Sabanadzovic; Peter Simmonds; Donald B Smith; Arvind Varsani; Francisco Murilo Zerbini; Andrew J Davison
Journal:  Arch Virol       Date:  2020-11       Impact factor: 2.574

Review 6.  HCIV-1 and Other Tailless Icosahedral Internal Membrane-Containing Viruses of the Family Sphaerolipoviridae.

Authors:  Tatiana A Demina; Maija K Pietilä; Julija Svirskaitė; Janne J Ravantti; Nina S Atanasova; Dennis H Bamford; Hanna M Oksanen
Journal:  Viruses       Date:  2017-02-18       Impact factor: 5.048

7.  Cobaviruses - a new globally distributed phage group infecting Rhodobacteraceae in marine ecosystems.

Authors:  Vera Bischoff; Boyke Bunk; Jan P Meier-Kolthoff; Cathrin Spröer; Anja Poehlein; Marco Dogs; Mary Nguyen; Jörn Petersen; Rolf Daniel; Jörg Overmann; Markus Göker; Meinhard Simon; Thorsten Brinkhoff; Cristina Moraru
Journal:  ISME J       Date:  2019-02-04       Impact factor: 10.302

Review 8.  The new scope of virus taxonomy: partitioning the virosphere into 15 hierarchical ranks.

Authors: 
Journal:  Nat Microbiol       Date:  2020-04-27       Impact factor: 17.745

9.  ICTV Virus Taxonomy Profile: Spiraviridae.

Authors:  David Prangishvili; Tomohiro Mochizuki; Mart Krupovic
Journal:  J Gen Virol       Date:  2020-03       Impact factor: 3.891

10.  Expansion of known ssRNA phage genomes: From tens to over a thousand.

Authors:  J Callanan; S R Stockdale; A Shkoporov; L A Draper; R P Ross; C Hill
Journal:  Sci Adv       Date:  2020-02-07       Impact factor: 14.136

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  5 in total

1.  Systematic exploration of Escherichia coli phage-host interactions with the BASEL phage collection.

Authors:  Enea Maffei; Aisylu Shaidullina; Marco Burkolter; Yannik Heyer; Fabienne Estermann; Valentin Druelle; Patrick Sauer; Luc Willi; Sarah Michaelis; Hubert Hilbi; David S Thaler; Alexander Harms
Journal:  PLoS Biol       Date:  2021-11-16       Impact factor: 8.029

2.  Phage Annotation Guide: Guidelines for Assembly and High-Quality Annotation.

Authors:  Dann Turner; Evelien M Adriaenssens; Igor Tolstoy; Andrew M Kropinski
Journal:  Phage (New Rochelle)       Date:  2021-12-16

3.  Halovirus HF2 Intergenic Repeat Sequences Carry Promoters.

Authors:  Brendan Russ; Friedhelm Pfeiffer; Mike Dyall-Smith
Journal:  Viruses       Date:  2021-11-29       Impact factor: 5.048

4.  Ribitol-Containing Wall Teichoic Acid of Tetragenococcus halophilus Is Targeted by Bacteriophage phiWJ7 as a Binding Receptor.

Authors:  Takura Wakinaka; Minenosuke Matsutani; Jun Watanabe; Yoshinobu Mogi; Masafumi Tokuoka; Akihiro Ohnishi
Journal:  Microbiol Spectr       Date:  2022-03-21

5.  Daily Reports on Phage-Host Interactions.

Authors:  Kamil Albrycht; Adam A Rynkiewicz; Michal Harasymczuk; Jakub Barylski; Andrzej Zielezinski
Journal:  Front Microbiol       Date:  2022-07-14       Impact factor: 6.064

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