Phycodnaviridae (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Phycodnaviridae" in German language version.

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  • Eugene V. Koonin, Natalya Yutin: Evolution of the Large Nucleocytoplasmatic DNA Viruses of Eukaryotes and Convergent Origins of Viral Gigantism. In: Advances in Virus research, Band 103, AP 21. Januar 2019, doi:10.1016/bs.aivir.2018.09.002, S. 167–202. In Fig. 4 ist phycodnaviruses wohl im engeren Sinne (s. s.) zu verstehen und dürfte der Chlorovirus/Prasinovirus/‚YLPV‘-Gruppe bei Schulz et al. (2018) entsprechen.
  • Frederik Schulz, Lauren Alteio, Danielle Goudeau, Elizabeth M. Ryan, Feiqiao B. Yu, Rex R. Malmstrom, Jeffrey Blanchard, Tanja Woyke: Hidden diversity of soil giant viruses. In: Nature Communications, Band 9, Nr. 4881, 19. November 2018; doi:10.1038/s41467-018-07335-2 (englisch).
  • Hao Chen, Weijia Zhang, Xiefei Li, Yingjie Pan, Shuling Yan, Yongjie Wang: The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses, in: BMC Genomics, Dezember 2018, 19:49 (online 15. Januar 2018), doi:10.1186/s12864-018-4432-4 (englisch): Yellowstone Lake phycodnavirus (YSLPV, Phycodnaviridae) versus Yellowstone lake giant virus (YSLGV, Mimiviridae); daneben DSLPV1 (Phycodnaviridae)
  • Dickson Kinyanyi, George Obiero, Peris W Amwayi, Stephen Mwaniki, Mark Wamalwa: In silico structural and functional prediction of African swine fever virus protein-B263R reveals features of a TATA-binding protein. In: PeerJ 6(4):e4396 (2018); doi:10.7717/peerj.4396, S. 13, insbes. Fig. 7 (Ylpv-A, Ylpv-B)
  • Julien Andreani, Jacques Y. B. Khalil, Emeline Baptiste, Issam Hasni, Caroline Michelle, Didier Raoult, Anthony Levasseur, Bernard La Scola: Orpheovirus IHUMI-LCC2: A New Virus among the Giant Viruses. In: Front. Microbiol., 22. Januar 2018, doi:10.3389/fmicb.2017.02643.
  • Shengzhong Xu, Liang Zhou, Xiaosha Liang, Yifan Zhou, Hao Chen, Shuling Yan, Yongjie Wang; Julie K. Pfeiffer (Hrsg.): Novel Cell-Virus-Virophage Tripartite Infection Systems Discovered in the Freshwater Lake Dishui Lake in Shanghai, China. In: Journal of Virology, 18. Mai 2020; doi:10.1128/JVI.00149-20, PMID 32188734 (englisch).
  • Clara Rolland, Julien Andreani, Amina Cherif Louazani, Sarah Aherfi, Rania Francis, Rodrigo Rodrigues, Ludmila Santos Silva, Dehia Sahmi, Said Mougari, Nisrine Chelkha, Meriem Bekliz, Lorena Silva, Felipe Assis, Fábio Dornas, Jacques Yaacoub Bou Khalil, Isabelle Pagnier, Christelle Desnues, Anthony Levasseur, Philippe Colson, Jônatas Abrahão, Bernard La Scola: Discovery and Further Studies on Giant Viruses at the IHU Mediterranee Infection That Modified the Perception of the Virosphere. In: MDPI: Viruses, Band 11, Nr. 4, März/April 2019, pii: E312; doi:10.3390/v11040312, PMC 6520786 (freier Volltext), PMID 30935049, MDPI (englisch); siehe Fig. 2a.
  • Fumito Maruyama, Shoko Ueki: Evolution and Phylogeny of Large DNA Viruses, Mimiviridae and Phycodnaviridae Including Newly Characterized Heterosigma akashiwo Virus. In: Frontiers in Microbiology. 7. Jahrgang, 30. November 2016, ResearchGate:311160794, S. 1942, doi:10.3389/fmicb.2016.01942, PMID 27965659, PMC 5127864 (freier Volltext) – (englisch).
  • Eugene V. Koonin, Natalya Yutin: Multiple evolutionary origins of giant viruses. In: F1000 Research. 22. November 2018, doi:10.12688/f1000research.16248.1, version 1.
  • Timo Greiner, Anna Moroni, James L. Van Etten, Gerhard Thiel: Genes for Membrane Transport Proteins: Not So Rare in Viruses. In: MDPI: Viruses, Band 10, Nr. 9, Special Issue Algae Virus, 26 August 2018, 456; doi:10.3390/v10090456 (englisch).
  • Clara Rolland, Julien Andreani, Dehia Sahmi-Bounsiar, Mart Krupovic, Bernard La Scola, Anthony Levasseur: Clandestinovirus: A Giant Virus With Chromatin Proteins and a Potential to Manipulate the Cell Cycle of Its Host Vermamoeba vermiformis. In: Frontiers in Microbiology, Band 12, 10. August 2021, Nr. 715608; doi:10.3389/fmicb.2021.715608, PMID 34447361, PMC 8383183 (freier Volltext) (englisch).
  • Frank O. Aylward, Mohammad Moniruzzaman, Anh D. Ha, Eugene V. Koonin: A phylogenomic framework for charting the diversity and evolution of giant viruses. In: PLOS Biology, 27. Oktober 2021; doi:10.1371/journal.pbio.3001430 (englisch).
  • Ruixuan Zhang, Masaharu Takemura, Kazuyoshi Murata, Hiroyuki Ogata: “Mamonoviridae”, a proposed new family of the phylum Nucleocytoviricota. In: Archives of Virology, Band 168, Nr. 80, 5. Februar 2023; doi:10.1007/s00705-022-05633-1, PMID 36740641 (englisch).
  • Luke A. Sarre, Iana V. Kim, Vladimir Ovchinnikov, Marine Olivetta, Hiroshi Suga, Omaya Dudin, Arnau Sebé-Pedrós, Alex de Mendoza: DNA methylation enables recurrent endogenization of giant viruses in an animal relative. In: ScienceAdvances, Band 10, Nr. 28, 12. Juli 2024; doi:10.1126/sciadv.ado6406 (englisch).
  • Natalya Yutin, Eugene V. Koonin: Pandoraviruses are highly derived phycodnaviruses. In: Biology Direct. 8. Jahrgang, Oktober 2013, S. 25, doi:10.1186/1745-6150-8-25, PMID 24148757 (englisch).
  • Michael J. Allen, Declan C. Schroeder, Matthew T. G. Holden, William H. Wilson: Evolutionary History of the Coccolithoviridae. In: Molecular Biology and Evolution, Volume 23, Issue 1, 1. Januar 2006, S. 86–92, doi:10.1093/molbev/msj010.
  • Jônatas Abrahão, Lorena Silva, Ludmila Santos Silva, Jacques Yaacoub Bou Khalil, Rodrigo Rodrigues, Thalita Arantes, Felipe Assis, Paulo Boratto, Miguel Andrade, Erna Geessien Kroon, Bergmann Ribeiro, Ivan Bergier, Herve Seligmann, Eric Ghigo, Philippe Colson, Anthony Levasseur, Guido Kroemer, Didier Raoult, Bernard La Scola: Tailed giant Tupanvirus possesses the most complete translational apparatus of the known virosphere. In: Nature Communications. 9. Jahrgang, Nr. 1, 27. Februar 2018, doi:10.1038/s41467-018-03168-1 (englisch, nature.com).
  • Jean-Michel Claverie, Chantal Abergel: Mimiviridae: An Expanding Family of Highly Diverse Large dsDNA Viruses Infecting a Wide Phylogenetic Range of Aquatic Eukaryotes. In: MDPI: Viruses. Band 10, Nr. 9, 18. September 2018, S. 506; doi:10.3390/v10090506, PMC 6163669 (freier Volltext), PMID 30231528 (englisch).
  • Sailen Barik: A Family of Novel Cyclophilins, Conserved in the Mimivirus Genus of the Giant DNA Viruses. In: Computational and Structural Biotechnology Journal, Band 16, Juli 2018, S. 231–236; doi:10.1016/j.csbj.2018.07.001 (englisch).
  • Torill Vik Johannessen, Gunnar Bratbak, Aud Larsenb, Hiroyuki Ogatac, Elianne S.Egged, Bente Edvardsen, Wenche Eikremd, Ruth-Anne Sandaaa: Characterisation of three novel giant viruses reveals huge diversity among viruses infecting Prymnesiales (Haptophyta). In: Virology, Band 476, Februar 2015, S. 180–188; doi:10.1016/j.virol.2014.12.014, PMID 25546253 (englisch).
  • Natalya Yutin, Philippe Colson, Didier Raoult, Eugene V. Koonin: Mimiviridae: clusters of orthologous genes, reconstruction of gene repertoire evolution and proposed expansion of the giant virus family, in: Virol J. 2013; 10: 106, 4. April 2013; doi:10.1186/1743-422X-10-106, PMC 3620924 (freier Volltext), PMID 23557328 (englisch).
  • Weijia Zhang, Jinglie Zhou, Taigang Liu, Yongxin Yu, Yingjie Pan, Shuling Yan, Yongjie Wang: Four novel algal virus genomes discovered from Yellowstone Lake metagenomes. In: Scientific Reports, volume 5, Artikel Nr. 15131, 2015; doi:10.1038/srep15131.
  • Christopher R. Schvarcz, Grieg F. Steward: A giant virus infecting green algae encodes key fermentation genes. In: Virology, Band 518, Mai 2018, S. 423–433; doi:10.1016/j.virol.2018.03.010 (englisch).
  • Lucie Gallot-Lavallee, Guillaume Blanc, Jean-Michel Claverie: Comparative genomics of Chrysochromulina Ericina Virus (CeV) and other microalgae-infecting large DNA viruses highlight their intricate evolutionary relationship with the established Mimiviridae family. In: J. Virol., 26 April 2017; doi:10.1128/JVI.00230-17 (englisch).
  • Yoshitoshi Ogura, Tetsuya Hayashi, Shoko Ueki: Complete Genome Sequence of a Phycodnavirus, Heterosigma akashiwo Virus Strain 53. In: Microbiology, September 2016, doi:10.1128/genomeA.01279-16, PMID 27834719, mra.asm.org@1@2Vorlage:Toter Link/mra.asm.org (Seite nicht mehr abrufbar, festgestellt im April 2024. Suche in Webarchiven)  Info: Der Link wurde automatisch als defekt markiert. Bitte prüfe den Link gemäß Anleitung und entferne dann diesen Hinweis. (PDF).

frontiersin.org

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ictvonline.org

talk.ictvonline.org

mdpi.com

  • Clara Rolland, Julien Andreani, Amina Cherif Louazani, Sarah Aherfi, Rania Francis, Rodrigo Rodrigues, Ludmila Santos Silva, Dehia Sahmi, Said Mougari, Nisrine Chelkha, Meriem Bekliz, Lorena Silva, Felipe Assis, Fábio Dornas, Jacques Yaacoub Bou Khalil, Isabelle Pagnier, Christelle Desnues, Anthony Levasseur, Philippe Colson, Jônatas Abrahão, Bernard La Scola: Discovery and Further Studies on Giant Viruses at the IHU Mediterranee Infection That Modified the Perception of the Virosphere. In: MDPI: Viruses, Band 11, Nr. 4, März/April 2019, pii: E312; doi:10.3390/v11040312, PMC 6520786 (freier Volltext), PMID 30935049, MDPI (englisch); siehe Fig. 2a.

mementoweb.org

timetravel.mementoweb.org

nature.com

  • Frederik Schulz, Lauren Alteio, Danielle Goudeau, Elizabeth M. Ryan, Feiqiao B. Yu, Rex R. Malmstrom, Jeffrey Blanchard, Tanja Woyke: Hidden diversity of soil giant viruses. In: Nature Communications, Band 9, Nr. 4881, 19. November 2018; doi:10.1038/s41467-018-07335-2 (englisch).
  • Jônatas Abrahão, Lorena Silva, Ludmila Santos Silva, Jacques Yaacoub Bou Khalil, Rodrigo Rodrigues, Thalita Arantes, Felipe Assis, Paulo Boratto, Miguel Andrade, Erna Geessien Kroon, Bergmann Ribeiro, Ivan Bergier, Herve Seligmann, Eric Ghigo, Philippe Colson, Anthony Levasseur, Guido Kroemer, Didier Raoult, Bernard La Scola: Tailed giant Tupanvirus possesses the most complete translational apparatus of the known virosphere. In: Nature Communications. 9. Jahrgang, Nr. 1, 27. Februar 2018, doi:10.1038/s41467-018-03168-1 (englisch, nature.com).
  • Weijia Zhang, Jinglie Zhou, Taigang Liu, Yongxin Yu, Yingjie Pan, Shuling Yan, Yongjie Wang: Four novel algal virus genomes discovered from Yellowstone Lake metagenomes. In: Scientific Reports, volume 5, Artikel Nr. 15131, 2015; doi:10.1038/srep15131.

nih.gov

ncbi.nlm.nih.gov

oup.com

academic.oup.com

researchgate.net