Translating Bioengineering Principles to Coral Reef Restoration Under Climate Change

Coral reefs support immense biodiversity and human well-being, yet accelerating environmental change is driving unprecedented losses of habitat-forming hard corals in recent decades and demands new strategies to strengthen reef resilience. Advances in bioengineering are expanding the controllable parameter space of living systems, enabling intervention at genetic, cellular, and microenvironmental scales, thereby creating new possibilities for scalable coral reef restoration. In this review, we synthesize recent bioengineering advances applied to coral restoration, focusing on key bottlenecks such as recruitment limitation, outplant survivorship, bleaching susceptibility, and early mortality These approaches include controlled-release surfaces for inductive settlement signals, antifouling and growth-optimized substrates, modular biofabrication platforms, targeted microbiome manipulation, and nanomaterial-mediated mitigation of oxidative stress. We argue that, if successfully translated at scale, bioengineering approaches could prove transformative for sustaining reef ecosystem function under accelerating climate change.

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Publication Details

Journal
Annual Review of Marine Science
Published
2026-09-11
DOI
https://doi.org/10.1146/annurev-marine-040825-121115
Primary Topic
Coral and Marine Ecosystems Studies
Type
article
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article

Translating Bioengineering Principles to Coral Reef Restoration Under Climate Change

Daniel Wangpraseurt, Alexander U. Valle-Pérez
Annual Review of Marine Science
Coral and Marine Ecosystems Studies
article

Translating Bioengineering Principles to Coral Reef Restoration Under Climate Change

Daniel Wangpraseurt, Alexander U. Valle-Pérez
article en

Abstract

Coral reefs support immense biodiversity and human well-being, yet accelerating environmental change is driving unprecedented losses of habitat-forming hard corals in recent decades and demands new strategies to strengthen reef resilience. Advances in bioengineering are expanding the controllable parameter space of living systems, enabling intervention at genetic, cellular, and microenvironmental scales, thereby creating new possibilities for scalable coral reef restoration. In this review, we synthesize recent bioengineering advances applied to coral restoration, focusing on key bottlenecks such as recruitment limitation, outplant survivorship, bleaching susceptibility, and early mortality These approaches include controlled-release surfaces for inductive settlement signals, antifouling and growth-optimized substrates, modular biofabrication platforms, targeted microbiome manipulation, and nanomaterial-mediated mitigation of oxidative stress. We argue that, if successfully translated at scale, bioengineering approaches could prove transformative for sustaining reef ecosystem function under accelerating climate change.

Annual Review of Marine Science
Scripps Institution of Oceanography (US)
Openalex Percentile: Top 11%
Coral and Marine Ecosystems Studies
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Translating Bioengineering Principles to Coral Reef Restoration Under Climate Change — Daniel Wangpraseurt, Alexander U. Valle-Pérez · Annual Review of Marine Science (2026) | TGRS Research Map | TGRS