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February 22, 2026The ISME Journal0 citationsOpen Access

Induced pathogenicity toward open-ocean diatoms by a filterable bacterium Ekhidna algicida sp. nov.

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SCShiri Graff van CreveldSCSacha CoeselELEllen Lavoie

Key Points

  • The aim is to investigate the pathogenicity of Ekhidna algicida toward pelagic diatoms in marine environments.
  • Isolation of Ekhidna algicida strain To15 from the Pacific Ocean
  • Co-culture experiments with Thalassiosira oceanica and other diatom species
  • Genomic characterization including identification of a type IX secretion system
  • Ekhidna algicida demonstrates lethal effects on various diatoms within days
  • Bacterial exudates are crucial for inducing pathogenicity
  • Twenty additional algicidal strains of Ekhidna were found in the Pacific Ocean

Abstract

Abstract Phytoplankton are the base of marine food webs. They form intricate interactions with heterotrophic bacteria ranging from mutualistic to pathogenic that together impact oceanic carbon and nutrient cycling. Our understanding of these interactions in marine environments remains primarily limited to laboratory-based studies of model organisms. Here, we report the discovery and characterization of Ekhidna algicida sp. nov. strain To15, isolated from the oligotrophic Pacific Ocean (16°N, 140°W) based on its algicidal effect on the pelagic diatom Thalassiosira oceanica. Subsequent co-culture experiments demonstrate that E. algicida is lethal within days to a diverse array of diatoms, including diatoms isolated from similar locations, with the effect mediated by bacterial exudates produced during co-culture with susceptible diatoms. Exudates of E. algicida monoculture are not algicidal, suggesting a pathogenic shift upon interaction with susceptible diatoms. The genome of E. algicida To15 encodes for a type IX secretion system (T9SS), together with candidate secreted proteases, suggesting a potential protein-mediated pathogenicity. Twenty additional algicidal Ekhidna strains were subsequently isolated from the Pacific Ocean. All these algicidal bacteria pass through 0.2 μm pore-size filters, highlighting the importance of the often-overlooked group of “filterable” marine bacteria. Our findings reveal E. algicida as a Pacific Ocean diatom pathogen, with potential impacts on microbial community composition dynamics in pelagic ecosystems.

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Cite This Study

Creveld et al. (2026) studied this question.

synapsesocial.com/papers/699a9d65482488d673cd3324https://doi.org/10.1093/ismejo/wrag038
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