An autonomous plasmid as an inovirus phage satellite
Schmid N, Brandt D, Walasek C, Rolland C, Wittmann J, Fischer D, Müsken M, Kalinowski J, Thormann K (2024)
Applied and Environmental Microbiology : e0024624.
Zeitschriftenaufsatz
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Autor*in
Schmid, Nicole;
Brandt, DavidUniBi ;
Walasek, Claudia;
Rolland, Clara;
Wittmann, Johannes;
Fischer, Dorian;
Müsken, Mathias;
Kalinowski, JörnUniBi;
Thormann, Kai
Einrichtung
Abstract / Bemerkung
Bacterial viruses (phages) are potent agents of lateral gene transfer and thus are important drivers of evolution. A group of mobile genetic elements, referred to as phage satellites, exploits phages to disseminate their own genetic material. Here, we isolated a novel member of the family Inoviridae, Shewanella phage Dolos, along with an autonomously replicating plasmid, pDolos. Dolos causes a chronic infection in its host Shewanella oneidensis by phage production with only minor effects on the host cell proliferation. When present, plasmid pDolos hijacks Dolos functions to be predominantly packaged into phage virions and released into the environment and, thus, acts as a phage satellite. pDolos can disseminate further genetic material encoding, e.g., resistances or fluorophores to host cells sensitive to Dolos infection. Given the rather simple requirements of a plasmid for takeover of an inovirus and the wide distribution of phages of this group, we speculate that similar phage-satellite systems are common among bacteria.IMPORTANCEPhage satellites are mobile genetic elements, which hijack phages to be transferred to other host cells. The vast majority of these phage satellites integrate within the host's chromosome, and they all carry remaining phage genes. Here, we identified a novel phage satellite, pDolos, which uses an inovirus for dissemination. pDolos (i) remains as an autonomously replicating plasmid within its host, (ii) does not carry recognizable phage genes, and (iii) is smaller than any other phage satellites identified so far. Thus, pDolos is the first member of a new class of phage satellites, which resemble natural versions of phagemids.
Erscheinungsjahr
2024
Zeitschriftentitel
Applied and Environmental Microbiology
Art.-Nr.
e0024624
eISSN
1098-5336
Page URI
https://pub.uni-bielefeld.de/record/2988649
Zitieren
Schmid N, Brandt D, Walasek C, et al. An autonomous plasmid as an inovirus phage satellite. Applied and Environmental Microbiology . 2024: e0024624.
Schmid, N., Brandt, D., Walasek, C., Rolland, C., Wittmann, J., Fischer, D., Müsken, M., et al. (2024). An autonomous plasmid as an inovirus phage satellite. Applied and Environmental Microbiology , e0024624. https://doi.org/10.1128/aem.00246-24
Schmid, Nicole, Brandt, David, Walasek, Claudia, Rolland, Clara, Wittmann, Johannes, Fischer, Dorian, Müsken, Mathias, Kalinowski, Jörn, and Thormann, Kai. 2024. “An autonomous plasmid as an inovirus phage satellite”. Applied and Environmental Microbiology : e0024624.
Schmid, N., Brandt, D., Walasek, C., Rolland, C., Wittmann, J., Fischer, D., Müsken, M., Kalinowski, J., and Thormann, K. (2024). An autonomous plasmid as an inovirus phage satellite. Applied and Environmental Microbiology :e0024624.
Schmid, N., et al., 2024. An autonomous plasmid as an inovirus phage satellite. Applied and Environmental Microbiology , : e0024624.
N. Schmid, et al., “An autonomous plasmid as an inovirus phage satellite”, Applied and Environmental Microbiology , 2024, : e0024624.
Schmid, N., Brandt, D., Walasek, C., Rolland, C., Wittmann, J., Fischer, D., Müsken, M., Kalinowski, J., Thormann, K.: An autonomous plasmid as an inovirus phage satellite. Applied and Environmental Microbiology . : e0024624 (2024).
Schmid, Nicole, Brandt, David, Walasek, Claudia, Rolland, Clara, Wittmann, Johannes, Fischer, Dorian, Müsken, Mathias, Kalinowski, Jörn, and Thormann, Kai. “An autonomous plasmid as an inovirus phage satellite”. Applied and Environmental Microbiology (2024): e0024624.
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