Publikationen von Matthias G. Fischer
Alle Typen
Zeitschriftenartikel (27)
1.
Zeitschriftenartikel
121 (11), e2314606121, S. 1 - 11 (2024)
Endogenous virophages are active and mitigate giant virus infection in the marine protist Cafeteria burkhardae. PNAS 2.
Zeitschriftenartikel
Amazing structural diversity of giant virus-like particles in forest soil. bioRxiv, 546935, S. 1 - 32 (2023)
3.
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120 (16), e2300465120, S. 1 - 10 (2023)
Large-scale invasion of unicellular eukaryotic genomes by integrating DNA viruses. Proceedings of the National Academy of Sciences of the United States of America 4.
Zeitschriftenartikel
13 (2), 204, S. 1 - 21 (2023)
Updated virophage taxonomy and distinction from polinton-like viruses. Biomolecules 5.
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12, 16430, S. 1 - 12 (2022)
Crystal structures of FNIP/FGxxFN motif-containing leucine-rich repeat proteins. Scientific Reports 6.
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14 (5), 1056, S. 1 - 11 (2022)
Simultaneous giant virus and virophage quantification using droplet digital PCR. Viruses 7.
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10, e72674, S. 1 - 20 (2021)
Virophages and retrotransposons colonize the genomes of a heterotrophic flagellate. eLife 8.
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15 (1), S. 154 - 167 (2021)
Gene expression during bacterivorous growth of a widespread marine heterotrophic flagellate. The ISME Journal 9.
Zeitschriftenartikel
36 (22-23), S. 5514 - 5515 (2020)
MOSGA: Modular open-source genome annotator. Bioinformatics 10.
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Visualization of giant virus particles using BONCAT labeling and STED microscopy. bioRxiv, 202192, S. 1 - 22 (2020)
11.
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7, 29, S. 1 - 9 (2020)
Four high-quality draft genome assemblies of the marine heterotrophic nanoflagellate Cafeteria roenbergensis. Scientific Data 12.
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1447 (1), S. 97 - 109 (2019)
The dual lifestyle of genome‐integrating virophages in protists. Annals of the New York Academy of Sciences 13.
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Viva lavidaviruses! Five features of virophages that parasitize giant DNA viruses. PLoS Pathogens, e1007592, S. 1 - 7 (2019)
14.
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10, S. 1 - 11 (2018)
Quantitative infection dynamics of cafeteria roenbergensis virus. Viruses 15.
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Capsid protein structure, self-assembly, and processing reveal morphogenesis of the marine virophage mavirus. Proceedings of the National Academy of Sciences of the United States of America (28), S. 7332 - 7337 (2018)
16.
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7, 5484, S. 1 - 7 (2017)
Cryo-EM reconstruction of the Cafeteria roenbergensis virus capsid suggests novel assembly pathway for giant viruses. Scientific Reports 17.
Zeitschriftenartikel
540 (7632), S. 288 - 291 (2016)
Host genome integration and giant virus-induced reactivation of the virophage mavirus. Nature 18.
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31, S. 50 - 57 (2016)
Giant viruses come of age. Current Opinion in Microbiology 19.
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161 (1), S. 233 - 247 (2016)
A classification system for virophages and satellite viruses. Archives of Virology 20.
Zeitschriftenartikel
112 (38), S. 11750 - 11751 (2015)
Commentary: Virophages go nuclear in the marine alga Bigelowiella natans. Proceedings of the National Academy of Sciences of the United States of America