Coronaviridae (German Wikipedia)

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

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elifesciences.org

  • Gideon J Mordecai, Kristina M Miller, Emiliano Di Cicco, Angela D Schulze, Karia H Kaukinen, Tobi J Ming, Shaorong Li, Amy Tabata, Amy Teffer, David A Patterson, Hugh W Ferguson, Curtis A Suttle: Endangered wild salmon infected by newly discovered viruses. Version 1. In: eLife. eLife Sciences Publications Ltd., 3. September 2019, 47615, doi:10.7554/eLife.47615 (englisch, Volltext [PDF; 2,7 MB; abgerufen am 21. Mai 2020]): “The novel nidovirus, named Pacific salmon nidovirus (PsNV), is most closely related to the recently described Microhyla alphaletovirus 1 […].”

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  • Kenneth McIntosh (für dieses Kapitel): Feigin and Cherry's Textbook of Pediatric Infectious Disease. 6. Auflage. Saunders / Elsevier, Philadelphia, PA (USA) 2009, ISBN 978-1-4160-4044-6, section XVII, subsection 10, chapter 189A. Coronaviruses and Toroviruses, S. 2380 (englisch, Volltext des Kapitels [PDF; 265 kB; abgerufen am 7. Juli 2020]): “[T]he genus Coronavirus of the family Coronaviridae, named for the crown-like appearance of their surface projections on electron microscopy.”
  • Kenneth McIntosh (für dieses Kapitel): Feigin and Cherry's Textbook of Pediatric Infectious Disease. 6. Auflage. Saunders / Elsevier, Philadelphia, PA (USA) 2009, ISBN 978-1-4160-4044-6, section XVII, subsection 10, chapter 189A. Coronaviruses and Toroviruses, S. 2380 (englisch, Volltext des Kapitels [PDF; 265 kB; abgerufen am 7. Juli 2020] Zusätzlich zum Zitat ein- bis mehrmalige Verwendung im Kapitel (einschließlich Quellenangaben) von: »HCoV-229E-like isolates«, »HCoV-OC43-like isolates«, »HCoV-229E-like viruses«, »HCoV-229E-like strains«, »HCoV-OC43-like strains«, »229E-like coronavirus«, »“avian infectious bronchitis virus-like” viruses (coronaviruses)«, »“IBV-like” virus«, »“IBV-like” viruses«.): “When sufficient virus has been recovered for characterization, most isolates have proved to be similar, either HCoV-229E–like or HCoV-OC43–like,57 although several HCoVs, including the very first isolate HCoV-B814, remain antigenically uncharacterized. [… nächste Spalte …] The antigenic interrelationships of these four proteins have permitted arrangement of both the animal coronaviruses and HCoVs into three groups. The two known HCoV serotypes, each along with several other mammalian coronaviruses, have been placed in group I (HCoV-229E) or II (HCoV-OC43), and avian infectious bronchitis virus is the single member of group III.”

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nationalgeographic.com

  • Sydney Combs: She discovered coronaviruses decades ago – but got little recognition. In: National Geographic. Juni 2020 (Artikel online).

nature.com

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advances.sciencemag.org

  • Xiaojun Li, Elena E. Giorgi, Manukumar Honnayakanahalli Marichannegowda, Brian Foley, Chuan Xiao, Xiang-Peng Kong, Yue Chen, S. Gnanakaran, Bette Korber, Feng Gao: Emergence of SARS-CoV-2 through recombination and strong purifying selection. In: Science Advances, AAAs. 29. Mai 2020, eabb9153, doi:10.1126/sciadv.abb9153.
  • Xiaojun Li, Elena E. Giorgi, Manukumar Honnayakanahalli Marichannegowda, Brian Foley, Chuan Xiao, Xiang-Peng Kong, Yue Chen, S. Gnanakaran, Bette Korber, Feng Gao: Emergence of SARS-CoV-2 through recombination and strong purifying selection. In: Science Advances – AAAs. Artikel-Nr. abb9153. American Association for the Advancement of Science, 29. Mai 2020, ISSN 2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1 MB; abgerufen am 7. Juni 2020]): “These pangolin SARS-like CoVs (Pan_SL-CoV) form two distinct clades corresponding to their locations of origin: the first clade, Pan_SL-CoV_GD, sampled from Guangdong (GD) province in China, […] the second clade, Pan_SL-CoV_GX, sampled from Guangxi (GX) province […].”

science.sciencemag.org

  • C. B. Hudson, F. R. Beaudette: INFECTION OF THE CLOACA WITH THE VIRUS OF INFECTIOUS BRONCHITIS. In: Science. Band 76, Nr. 1958. American Association for the Advancement of Science, 8. Juli 1932, ISSN 0036-8075, S. 34, doi:10.1126/science.76.1958.34-a, PMID 17732084 (englisch, Volltext [PDF; abgerufen am 10. August 2020]).

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  • Stuart Siddell, Steven Myint: Coronaviruses. In: Steven Myint, D. A. J. Tyrrell, David Taylor-Robinson (Hrsg.): Viral and Other Infections of the Human Respiratory Tract. Chapman & Hall, London 1996, ISBN 978-94-011-7932-4 (Volltext als PDF).
  • A. F. Bradburne: Antigenic Relationships amongst Coronaviruses. In: Archiv für Virusforschung. Band 31. Springer-Verlag, 6. Februar 1970, S. 352–364, doi:10.1007/BF01253769 (englisch, Volltext [PDF; 923 kB; abgerufen am 18. Juni 2020]).

static-content.springer.com

swinehealth.org

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virological.org

  • Kristian G. Andersen, Andrew Rambaut, W. Ian Lipkin, Edward C. Holmes, Robert F. Garry: The Proximal Origin of SARS-CoV-2. Auf: virologica.org, Quelle: ARTIC Network, 17. Februar 2020.
  • Kristian G. Andersen, Andrew Rambaut, W. Ian Lipkin, Edward C. Holmes, Robert F. Garry: The Proximal Origin of SARS-CoV-2. In: virological.org, Quelle: ARTIC Network, 17. Februar 2020, Nature

web.archive.org

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  • M. R. Denison, R. L. Graham, E. F. Donaldson, L. D. Eckerle, R. S. Baric: Coronaviruses: an RNA proofreading machine regulates replication fidelity and diversity. In: RNA Biology. Band 8, Nr. 2, März-April 2011, S. 270–279, doi:10.4161/rna.8.2.15013, ISSN 1555-8584. PMID 21593585, PMC 3127101 (freier Volltext).
  • C. B. Hudson, F. R. Beaudette: INFECTION OF THE CLOACA WITH THE VIRUS OF INFECTIOUS BRONCHITIS. In: Science. Band 76, Nr. 1958. American Association for the Advancement of Science, 8. Juli 1932, ISSN 0036-8075, S. 34, doi:10.1126/science.76.1958.34-a, PMID 17732084 (englisch, Volltext [PDF; abgerufen am 10. August 2020]).
  • Virology: Coronaviruses. In: Nature. Band 220, 16. November 1968, ISSN 1476-4687, S. 650, doi:10.1038/220650b0 (englisch, Volltext [PDF; 1,8 MB; abgerufen am 18. Juni 2020] Erstmeldung über Entdeckung der Coronaviren).
  • Xiaojun Li, Elena E. Giorgi, Manukumar Honnayakanahalli Marichannegowda, Brian Foley, Chuan Xiao, Xiang-Peng Kong, Yue Chen, S. Gnanakaran, Bette Korber, Feng Gao: Emergence of SARS-CoV-2 through recombination and strong purifying selection. In: Science Advances – AAAs. Artikel-Nr. abb9153. American Association for the Advancement of Science, 29. Mai 2020, ISSN 2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1 MB; abgerufen am 7. Juni 2020]): “These pangolin SARS-like CoVs (Pan_SL-CoV) form two distinct clades corresponding to their locations of origin: the first clade, Pan_SL-CoV_GD, sampled from Guangdong (GD) province in China, […] the second clade, Pan_SL-CoV_GX, sampled from Guangxi (GX) province […].”
  • B.W. Neuman, M.J. Buchmeier: Coronaviruses. Nur Kapitel 1: Supramolecular Architecture of the Coronavirus Particle. In: Advances in Virus Research. 1. Auflage. Band 96. Elsevier Inc., 2016, ISBN 978-0-12-804736-1, ISSN 0065-3527, Abschnitt 2: Virion Structure and Durability, S. 4+5, doi:10.1016/bs.aivir.2016.08.005 (englisch, Volltext [PDF; 1,3 MB; abgerufen am 15. Juni 2020]).