微生物活性物质促进珊瑚幼虫定居。

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-09-09 eCollection Date: 2025-09-01 DOI:10.1093/pnasnexus/pgaf268
Natalie Levy, Samapti Kundu, Marnie Freckelton, Julie Dinasquet, Isabel Flores, Claudia T Galindo-Martínez, Martin Tresguerres, Vanessa De La Garza, Yazhi Sun, Zahra Karimi, Crawford Drury, Christopher P Jury, Joshua R Hancock, Shaochen Chen, Michael G Hadfield, Daniel Wangpraseurt
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引用次数: 0

摘要

全球珊瑚礁的减少要求采取新的战略,迅速补充珊瑚种群,维持生态系统的功能和服务。在退化的珊瑚礁上,繁殖成功率低阻碍了珊瑚的有性繁殖,并导致遗传多样性减少和珊瑚礁恢复力受损。在这里,我们介绍了一种细菌珊瑚礁墨水(Brink)来帮助珊瑚幼虫定居。Brink是一种光聚合活性材料,可以快速应用于修复基质,并已被用于培养两种诱导沉降的细菌菌株(lylophaga lytica和Thalassotalea euphylliae)。对印太珊瑚进行的直播产卵(Montipora capitata)和产卵(Pocillopora acuta)的沉降试验表明,与未涂覆对照基质相比,涂覆brink的基质沉降量增加了5倍。Brink可以用作平面涂层,也可以使用光辅助3D生物打印来制作图案,从而在珊瑚礁修复和工程中实现多种应用。这种方法显示了功能性生物材料在加强珊瑚生态系统工程和支持珊瑚礁恢复方面的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Microbial living materials promote coral larval settlement.

Microbial living materials promote coral larval settlement.

Microbial living materials promote coral larval settlement.

Microbial living materials promote coral larval settlement.

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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