Chemical and genomic characterization of a potential probiotic treatment for stony coral tissue loss disease

Author:

Ushijima BlakeORCID,Gunasekera Sarath P.,Meyer Julie L.ORCID,Tittl Jessica,Pitts Kelly A.ORCID,Thompson Sharon,Sneed Jennifer M.,Ding YousongORCID,Chen Manyun,Jay Houk L.,Aeby Greta S.ORCID,Häse Claudia C.,Paul Valerie J.ORCID

Abstract

AbstractConsidered one of the most devastating coral disease outbreaks in history, stony coral tissue loss disease (SCTLD) is currently spreading throughout Florida’s coral reefs and the greater Caribbean. SCTLD affects at least two dozen different coral species and has been implicated in extensive losses of coral cover. Here we show Pseudoalteromonas sp. strain McH1-7 has broad-spectrum antibacterial activity against SCTLD-associated bacterial isolates. Chemical analyses indicated McH1-7 produces at least two potential antibacterials, korormicin and tetrabromopyrrole, while genomic analysis identified the genes potentially encoding an L-amino acid oxidase and multiple antibacterial metalloproteases (pseudoalterins). During laboratory trials, McH1-7 arrested or slowed disease progression on 68.2% of diseased Montastraea cavernosa fragments treated (n = 22), and it prevented disease transmission by 100% (n = 12). McH1-7 is the most chemically characterized coral probiotic that is an effective prophylactic and direct treatment for the destructive SCTLD as well as a potential alternative to antibiotic use.

Funder

Smithsonian Institution

United States Department of Commerce | NOAA | Center for Sponsored Coastal Ocean Research

National Science Foundation

Florida Department of Environmental Protection Office of Resilience and Coastal Protection-Southeast Region

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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