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Temperate and filamentous bacteriophages as reservoirs of bacterial virulence in stony coral tissue loss disease

Bailey A. Wallace; Lydia Baker; Erin Papke; Blake Ushijima; Stephanie M. Rosales; Cynthia B. Silveira
Coral Reefs · 2026

Abstract

Lysogenic conversion, in which bacteriophages (viruses that infect bacteria) integrate into bacterial genomes and confer new phenotypic traits on their hosts, is a well-established mechanism for the emergence of pathogens. While this process underpins many bacterial diseases in humans and other animals, its role in coral disease remains largely unexplored. Here, we investigate the potential role of lysogenic conversion in stony coral tissue loss disease (SCTLD), which has caused unprecedented mortality of Caribbean corals since 2014 and for which the etiological agent remains unknown. Across 27 original coral samples and 174 publicly available metagenomes from the Florida Reef Tract spanning seven coral species, we detected a greater number of unique viral genomes harboring genomic features associated with lysogeny in diseased corals or visually healthy portions of diseased corals (DD and HD, respectively) compared to visually healthy (VH) corals. SCTLD-associated bacteriophages were primarily predicted to infect bacterial taxa previously implicated in the disease, such as Vibrionales , Rhodobacterales , and Flavobacteriia , and carried abundant and widespread virulence factors with the potential to enhance bacterial colonization, competition, or direct host damage, including homologs of Tse2, Zot, RTX, pneumolysin, and cytolytic delta-endotoxin. Although causal relationships remain unresolved, our findings indicate that phages have the genomic capacity to laterally transfer bacterial virulence genes in SCTLD-affected corals. The acquisition of genes via lysogenic conversion could contribute to bacterial virulence while maintaining community taxonomic profiles, helping to explain previous community profiling observations and providing a mechanistic framework for disease pathogenesis.

Bibliographic Information

JournalCoral Reefs
PublisherSpringer
Publication Date2026-06-11
Publication Year2026
Document TypeJournal Article
Print ISSN0722-4028
eISSN1432-0975
DOI10.1007/s00338-026-02902-2

Access Information

NARA Access Coverage1982-01-01~Current
Journal Homepagehttps://www.springer.com/journal/338
Publisher PageOpen Publisher Page
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