Chengxin Zhang, Wei Zheng, Xiaoqiang Huang, Eric W. Bell, Xiaogen Zhou, and Yang Zhang: Protein Structure and Sequence Reanalysis of 2019-nCoV Genome Refutes Snakes as Its Intermediate Host and the Unique Similarity between Its Spike Protein Insertions and HIV-1. In: Journal of Proteome Research. Band19, Nr.4. American Chemical Society, 22. März 2020, S.1351–1360, doi:10.1021/acs.jproteome.0c00129 (englisch, Volltext [PDF; 7,1MB; abgerufen am 6. Juni 2020] Halb kursiv gesetzt: Manis-CoV, scheinbar bzgl. Wirtstier-Typografie: Manis javanica): “2019-nCoV and the Manis coronavirus (Manis-CoV)”
Chengxin Zhang, Wei Zheng, Xiaoqiang Huang, Eric W. Bell, Xiaogen Zhou, and Yang Zhang: Protein Structure and Sequence Reanalysis of 2019-nCoV Genome Refutes Snakes as Its Intermediate Host and the Unique Similarity between Its Spike Protein Insertions and HIV-1. In: Journal of Proteome Research. Band19, Nr.4. American Chemical Society, 22. März 2020, S.1351–1360, doi:10.1021/acs.jproteome.0c00129 (englisch, Volltext [PDF; 7,1MB; abgerufen am 6. Juni 2020] Halb kursiv gesetzt: Manis-CoV, scheinbar bzgl. Wirtstier-Typografie: Manis javanica): “2019-nCoV and the Manis coronavirus (Manis-CoV)”
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Ben Hu, Lei-Ping Zeng, Xing-Lou Yang, Xing-Yi Ge, Wei Zhang, Bei Li, Jia-Zheng Xie, Xu-Rui Shen, Yun-Zhi Zhang, Ning Wang, Dong-Sheng Luo, Xiao-Shuang Zheng, Mei-Niang Wang, Peter Daszak, Lin-Fa Wang, Jie Cui, Zheng-Li Shi: Discovery of a rich gene pool of bat SARS-related coronaviruses provides new insights into the origin of SARS coronavirus. In: Christian Drosten (Hrsg.): PLOS Pathogens. 30. November 2017, Erster Satz, doi:10.1371/journal.ppat.1006698 (englisch): “SARS-related coronaviruses (SARSr-CoV)”
Alexander E. Gorbalenya, Susan C. Baker, Ralph S. Baric, Raoul J. de Groot, Christian Drosten, Anastasia A. Gulyaeva, Bart L. Haagmans, Chris Lauber, Andrey M Leontovich, Benjamin W. Neuman, Dmitry Penzar, Stanley Perlman, Leo L.M. Poon, Dmitry Samborskiy, Igor A. Sidorov, Isabel Sola, John Ziebuhr: Severe acute respiratory syndrome-related coronavirus: The species and its viruses – a statement of the Coronavirus Study Group. In: bioRxiv. 11. Februar 2020, bioRxiv: 10.1101/2020.02.07.937862v1 (Preprint-Volltext), S.1–20, doi:10.1101/2020.02.07.937862 (englisch).
Chengxin Zhang, Wei Zheng, Xiaoqiang Huang, Eric W. Bell, Xiaogen Zhou, and Yang Zhang: Protein Structure and Sequence Reanalysis of 2019-nCoV Genome Refutes Snakes as Its Intermediate Host and the Unique Similarity between Its Spike Protein Insertions and HIV-1. In: Journal of Proteome Research. Band19, Nr.4. American Chemical Society, 22. März 2020, S.1351–1360, doi:10.1021/acs.jproteome.0c00129 (englisch, Volltext [PDF; 7,1MB; abgerufen am 6. Juni 2020] Halb kursiv gesetzt: Manis-CoV, scheinbar bzgl. Wirtstier-Typografie: Manis javanica): “2019-nCoV and the Manis coronavirus (Manis-CoV)”
Chengxin Zhang, Wei Zheng, Xiaoqiang Huang, Eric W. Bell, Xiaogen Zhou, and Yang Zhang: Protein Structure and Sequence Reanalysis of 2019-nCoV Genome Refutes Snakes as Its Intermediate Host and the Unique Similarity between Its Spike Protein Insertions and HIV-1. In: Journal of Proteome Research. Band19, Nr.4. American Chemical Society, 22. März 2020, S.1351–1360, doi:10.1021/acs.jproteome.0c00129 (englisch, Volltext [PDF; 7,1MB; abgerufen am 6. Juni 2020] Halb kursiv gesetzt: Manis-CoV, scheinbar bzgl. Wirtstier-Typografie: Manis javanica): “2019-nCoV and the Manis coronavirus (Manis-CoV)”
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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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”
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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”
Xingguang Li, Junjie Zai, Qiang Zhao, Qing Nie, Yi Li, Brian T. Foley, Antoine Chaillon: Evolutionary history, potential intermediate animal host, and cross‐species analyses of SARS‐CoV‐2. In: Journal of Medical Virology, Band 27, Februar 2020; doi:10.1002/jmv.25731, PMID 32104911, ResearchGate:339539236, PDF (englisch).
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Erwan Sallard, José Halloy, Didier Casane, Etienne Decroly, Jacques van Helden: Tracing the origins of SARS-COV-2 in coronavirus phylogenies (Retrouver les origines du SARS-COV-2 dans les phylogénies de coronavirus). In: Médecine/Sciences, Preprint vom 16. Juli 2020, ResearchGate:342735890 (englisch);
HAL:hal-02891455v2 (16. Juli 2020, französisch);
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Erwan Sallard, José Halloy, Didier Casane, Etienne Decroly, Jacques van Helden: Tracing the origins of SARS-COV-2 in coronavirus phylogenies (Retrouver les origines du SARS-COV-2 dans les phylogénies de coronavirus). In: Médecine/Sciences, Preprint vom 16. Juli 2020, ResearchGate:342735890 (englisch);
HAL:hal-02891455v2 (16. Juli 2020, französisch);
HAL:hal-02891455v8 (24. November 2020, engl.).
Ming Wang et al.SARS-CoV Infection in a Restaurant from Palm Civet. In: Emerging Infectious Diseases journal. Band 11, Nr. 12, Dezember 2005, S. 1860–1865; doi:10.3201/eid1112.041293, PMC 3367621 (freier Volltext). PMID 16485471 (englisch).
Xingguang Li, Junjie Zai, Qiang Zhao, Qing Nie, Yi Li, Brian T. Foley, Antoine Chaillon: Evolutionary history, potential intermediate animal host, and cross‐species analyses of SARS‐CoV‐2. In: Journal of Medical Virology, Band 27, Februar 2020; doi:10.1002/jmv.25731, PMID 32104911, ResearchGate:339539236, PDF (englisch).
Erwan Sallard, José Halloy, Didier Casane, Etienne Decroly, Jacques van Helden: Tracing the origins of SARS-COV-2 in coronavirus phylogenies (Retrouver les origines du SARS-COV-2 dans les phylogénies de coronavirus). In: Médecine/Sciences, Preprint vom 16. Juli 2020, ResearchGate:342735890 (englisch);
HAL:hal-02891455v2 (16. Juli 2020, französisch);
HAL:hal-02891455v8 (24. November 2020, engl.).
Xingguang Li, Junjie Zai, Qiang Zhao, Qing Nie, Yi Li, Brian T. Foley, Antoine Chaillon: Evolutionary history, potential intermediate animal host, and cross‐species analyses of SARS‐CoV‐2. In: Journal of Medical Virology, Band 27, Februar 2020; doi:10.1002/jmv.25731, PMID 32104911, ResearchGate:339539236, PDF (englisch).
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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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”
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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”
Kristian G. Andersen, Andrew Rambaut, W. Ian Lipkin, Edward C. Holmes, Robert F. Garry: The Proximal Origin of SARS-CoV-2. Auf: virologica.org, Datenstand: 14. Februar 2020. Quelle: ARTIC Network (englisch).
Xingguang Li, Junjie Zai, Qiang Zhao, Qing Nie, Yi Li, Brian T. Foley, Antoine Chaillon: Evolutionary history, potential intermediate animal host, and cross‐species analyses of SARS‐CoV‐2. In: Journal of Medical Virology, Band 27, Februar 2020; doi:10.1002/jmv.25731, PMID 32104911, ResearchGate:339539236, PDF (englisch).
zdb-katalog.de
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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”
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, ISSN2375-2548, doi:10.1126/sciadv.abb9153 (englisch, Volltext [PDF; 3,1MB; 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 […].”