珊瑚礁
珊瑚
珊瑚养殖
暗礁
生态学
生物
珊瑚礁保护
生态系统
珊瑚礁的复原力
渔业
幼虫
结算(财务)
珊瑚礁的环境问题
栖息地
生态系统工程师
珊瑚礁组织
生物多样性
海洋生态系统
作者
Natalie Levy,Samapti Kundu,Marnie L. Freckelton,Julie Dinasquet,Isabel Flores,Claudia Tatiana Galindo-Martínez,Martín Tresguerres,Vanessa De La Garza,Yazhi Sun,Zahra Karimi,Crawford Drury,Christopher P. Jury,Joshua R. Hancock,Shaochen Chen,Michael G. Hadfield,Ben Jones,Josh Levy,Sean H Mahaffey,Aricia Argyris,Mark Aruda
出处
期刊:PNAS nexus
[Oxford University Press]
日期:2025-08-30
卷期号:4 (9): pgaf268-pgaf268
被引量:1
标识
DOI:10.1093/pnasnexus/pgaf268
摘要
Abstract The global decline of coral reefs calls for new strategies to rapidly restock coral populations and maintain ecosystem functions and services. Low recruitment success on degraded reefs hampers coral sexual propagation and leads to reduced genetic diversity and impaired reef resilience. Here, we introduce a Bacterial Reef Ink (Brink) to assist in coral larval settlement. Brink is a photopolymerized living material that can be rapidly applied to restoration substrates and has been formulated to cultivate two settlement-inducing bacterial strains (Cellulophaga lytica and Thalassotalea euphylliae). Settlement assays performed with broadcast spawning (Montipora capitata) and brooding (Pocillopora acuta) Indo-Pacific corals showed that Brink-coated substrates increased settlement >5-fold compared with uncoated control substrates. Brink can be applied as a flat coating or patterned using light-assisted 3D bioprinting, enabling diverse applications in reef restoration and engineering. This approach demonstrates the potential of functional living materials to enhance coral ecosystem engineering and support coral reef rehabilitation.
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