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◆ Cell reports2026-09-03

Probiotic and postbiotic treatment improves coral health and promotes specific metabolic and microbiome changes in situ during a heatwave.

Erika P Santoro, Inês Raimundo, Laura Beenham, Neus Garcias-Bonet, Francisca C García, Júnia Schultz, João Curdia, Chakkiath Paul Antony, Nathalia Delgadillo-Ordoñez, Upendra Singh, Alexandre S Rosado, Mariusz Jaremko, Lukasz Jaremko, Raquel S Peixoto

原始摘要(英文原文)· Original abstract
Microbial therapies are emerging as promising tools for coral protection against heat stress, yet such application was not tested in situ. We tested two coral-derived probiotic consortia and their heat-killed counterparts (postbiotics) on bleaching Acropora cf. valida in the Red Sea during a marine heatwave. Over 15 days, both live and one of the heat-killed treatments maintained photosynthetic efficiency (Fv/Fm), whereas placebo-treated corals exhibited significant thermal stress-induced decline. 16S rRNA gene sequencing profiling showed enrichment of putatively beneficial genera (e.g., Terasakiispira spp., Pseudoalteromonas spp.), and untargeted metabolomics resolved treatment-specific metabolic signatures that differed among consortia and between live and inactivated formulations. These molecular fingerprints suggest potential underlying protective mechanisms and host-microbiome interactions under heat stress. Together, our results position microbial therapies (probiotics and specific postbiotics) as field-validated interventions capable of minimizing impacts on corals during real-world thermal extremes and provide design cues for further development and deployment.
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Probiotic and postbiotic treatment improves coral health and promotes specific metabolic and microbiome changes in situ during a heatwave. — 科研速览 Science Skim