Active prophages in coral-associated Halomonas capable of lateral transduction

ISME J. 2024 Jan 8;18(1):wrae085. doi: 10.1093/ismejo/wrae085.

Abstract

Temperate phages can interact with bacterial hosts through lytic and lysogenic cycles via different mechanisms. Lysogeny has been identified as the major form of bacteria-phage interaction in the coral-associated microbiome. However, the lysogenic-to-lytic switch of temperate phages in ecologically important coral-associated bacteria and its ecological impact have not been extensively investigated. By studying the prophages in coral-associated Halomonas meridiana, we found that two prophages, Phm1 and Phm3, are inducible by the DNA-damaging agent mitomycin C and that Phm3 is spontaneously activated under normal cultivation conditions. Furthermore, Phm3 undergoes an atypical lytic pathway that can amplify and package adjacent host DNA, potentially resulting in lateral transduction. The induction of Phm3 triggered a process of cell lysis accompanied by the formation of outer membrane vesicles (OMVs) and Phm3 attached to OMVs. This unique cell-lysis process was controlled by a four-gene lytic module within Phm3. Further analysis of the Tara Ocean dataset revealed that Phm3 represents a new group of temperate phages that are widely distributed and transcriptionally active in the ocean. Therefore, the combination of lateral transduction mediated by temperate phages and OMV transmission offers a versatile strategy for host-phage coevolution in marine ecosystems.

Keywords: Halomonas; coral microbiome; lateral transduction; phage; prophage; temperate phage.

MeSH terms

  • Animals
  • Anthozoa* / microbiology
  • Anthozoa* / virology
  • Halomonas* / genetics
  • Halomonas* / virology
  • Lysogeny
  • Mitomycin / pharmacology
  • Prophages* / genetics
  • Prophages* / physiology
  • Transduction, Genetic

Substances

  • Mitomycin