Sofie Peeters, Chloé Stévenne, H Julia van Duijnhoven, Marcellina Rola, Manuela Quiroga-Pérez, Aschwin H Engelen, Gerard Muyzer, Pedro R Frade, Olivier De Clerck
Marine ecosystem engineers such as corals, seaweeds, and seagrasses are foundational to coastal ecosystems, yet are declining at unprecedented rates due to accelerating climate and anthropogenic pressures. Microbiome-based approaches have attracted attention as a promising avenue to enhance the resilience and recovery of these organisms. Over the past decade, diverse marine probiotic microbes have been isolated and shown to positively influence key host life functions, including growth, development, reproduction, responses to environmental stressors, and pathogen defence. However, current research remains confined to laboratory settings, with few practical field applications tested or utilised, likely driven by practical and technological challenges and lacking communication between science and policy. To help close this gap, we propose a set of risk and success assessment criteria for microbiome-assisted restoration. This framework is built around four pillars: (1) ensuring environmental compatibility of candidate probiotics, (2) establishing scientific validation for their mechanisms of action, (3) securing legal clarity before application, and (4) implementing mandatory in situ monitoring to evaluate ecological outcomes. By integrating these pillars into a cycle of risk assessment, monitoring, and adaptive management, microbiome-assisted restoration could progress from an experimental concept to a practical application complementing existing conservation tools, strengthening the resilience of these ecosystems.