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Morganella Phage Mecenats66 Utilizes an Evolutionarily Distinct Subtype of Headful Genome Packaging with a Preferred
Nikita Zrelovs1, Juris Jansons1, Andris Dislers1
1Latvian Biomedical Research and Study Center, Ratsupites 1 k-1, LV-1067 Riga, Latvia.
Abstract:
Both recognized species from the genus Morganella (M. morganii and M. psychrotolerans) are Gram-negative facultative anaerobic rod-shaped bacteria that have been documented as sometimes being implicated in human disease. Complete genomes of seven Morganella-infecting phages are publicly available today. Here, we report on the genomic characterization of an insect associated Morganella sp. phage, which we named Mecenats66, isolated from dead worker honeybees. Phage Mecenats66 was propagated, purified, and subjected to whole-genome sequencing with subsequent complete genome annotation. After the genome de novo assembly, it was noted that Mecenats66 might employ a headful packaging with a preferred packaging initiation site, although its terminase amino acid sequence did not fall within any of the currently recognized headful packaging subtype employing phage (that had their packaging strategy experimentally verified) with clusters on a terminase sequence phylogenetic tree. The in silico predicted packaging strategy was verified experimentally, validating the packaging initiation site and suggesting that Mecenats66 represents an evolutionarily distinct headful genome packaging with a preferred packaging initiation site strategy subtype. These findings can possibly be attributed to several of the phages already found within the public biological sequence repositories and could aid newly isolated phage packaging strategy predictions in the future.
Insights
Researchers characterized Mecenats66, a novel phage infecting Morganella bacteria found in honeybees. Experimental verification confirmed its unique headful genome packaging strategy, distinct from known subtypes.
Area of Science:
- Microbiology
- Virology
- Genomics
Background:
- The genus *Morganella*, comprising *M. morganii* and *M. psychrotolerans*, includes Gram-negative bacteria implicated in human diseases.
- Seven complete genomes of *Morganella*-infecting phages are available, but their packaging strategies are not fully elucidated.
Purpose of the Study:
- To perform genomic characterization of a newly isolated phage, Mecenats66, associated with *Morganella* species.
- To determine the genome packaging strategy of Mecenats66 and its evolutionary implications.
Main Methods:
- Isolation and propagation of Mecenats66 phage from dead honeybees.
- Whole-genome sequencing, de novo assembly, and annotation of the Mecenats66 genome.
- In silico prediction and experimental verification of the phage's genome packaging strategy.
Main Results:
- The complete genome of Mecenats66 was sequenced and annotated.
- Mecenats66 was predicted to employ a headful genome packaging strategy with a preferred initiation site.
- Experimental validation confirmed the predicted packaging strategy, revealing it as an evolutionarily distinct subtype.
Conclusions:
- Mecenats66 represents a novel phage with a unique headful genome packaging mechanism.
- This discovery expands our understanding of phage diversity and packaging strategies.
- Findings may assist in predicting packaging strategies for newly discovered phages.
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