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Published on: July 25, 2017
Marinomonas mediterranea synthesizes an R-type bacteriocin
Patricia Lucas-Elío1, Tarik ElAlami1, Alicia Martínez1
1Department of Genetics and Microbiology, University of Murcia, Murcia, Spain.
Abstract:
Prophages integrated into bacterial genomes can become cryptic or defective prophages, which may evolve to provide various traits to bacterial cells. Previous research on Marinomonas mediterranea MMB-1 demonstrated the production of defective particles. In this study, an analysis of the genomes of three different strains (MMB-1, MMB-2, and MMB-3) revealed the presence of a region named MEDPRO1, spanning approximately 52 kb, coding for a defective prophage in strains MMB-1 and MMB-2. This prophage seems to have been lost in strain MMB-3, possibly due to the presence of spacers recognizing this region in an I-F CRISPR array in this strain. However, all three strains produce remarkably similar defective particles. Using strain MMB-1 as a model, mass spectrometry analyses indicated that the structural proteins of the defective particles are encoded by a second defective prophage situated within the MEDPRO2 region, spanning approximately 13 kb. This finding was further validated through the deletion of this second defective prophage. Genomic region analyses and the detection of antimicrobial activity of the defective prophage against other Marinomonas species suggest that it is an R-type bacteriocin. Marinomonas mediterranea synthesizes antimicrobial proteins with lysine oxidase activity, and the synthesis of an R-type bacteriocin constitutes an additional mechanism in microbial competition for the colonization of habitats such as the surface of marine plants.IMPORTANCEThe interactions between bacterial strains inhabiting the same environment determine the final composition of the microbiome. In this study, it is shown that some extracellular defective phage particles previously observed in Marinomonas mediterranea are in fact R-type bacteriocins showing antimicrobial activity against other Marinomonas strains. The operon coding for the R-type bacteriocin has been identified.
Insights
Defective prophages in Marinomonas mediterranea produce R-type bacteriocins, acting as antimicrobial agents. These bacteriocins contribute to microbial competition and colonization in marine environments.
Area of Science:
- Microbiology
- Genomics
- Bacteriology
Background:
- Defective prophages can confer traits to bacterial hosts.
- Marinomonas mediterranea strains were previously observed to produce defective particles.
Purpose of the Study:
- To identify the genetic basis of defective particle production in Marinomonas mediterranea.
- To characterize the function and nature of these defective particles.
Main Methods:
- Genomic analysis of three Marinomonas mediterranea strains (MMB-1, MMB-2, MMB-3).
- Mass spectrometry to identify structural proteins of defective particles.
- Gene deletion experiments to validate findings.
- Antimicrobial activity assays.
Main Results:
- A 52 kb defective prophage (MEDPRO1) was identified in MMB-1 and MMB-2, absent in MMB-3.
- A second, 13 kb defective prophage within MEDPRO2 encodes the structural proteins.
- These defective particles function as R-type bacteriocins with antimicrobial activity against other Marinomonas species.
Conclusions:
- Extracellular defective phage particles from Marinomonas mediterranea are R-type bacteriocins.
- The identified bacteriocin operon provides a mechanism for microbial competition.
- This contributes to understanding bacterial interactions and microbiome composition in marine habitats.
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