健全なサンゴ礁の音がサンゴと魚の回復を促進(Healthy Reef Sounds Can Boost Coral and Fish Recovery Efforts)

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2026-10-08 カリフォルニア大学サンディエゴ校(UCSD)

米カリフォルニア大学サンディエゴ校(UC San Diego)のスクリップス海洋研究所が主導した2つの研究は、健全なサンゴ礁の水中音を再生する「音響エンリッチメント」が、劣化したサンゴ礁の再生を促す可能性を示した。ハワイのカネオヘ湾で2023~2024年に実施した野外実験では、健全な礁の魚や甲殻類などが発する音を夜間に水中スピーカーから流し、人工礁に定着するサンゴ幼生と魚類幼生を調べた。スピーカーに近い構造物ほどサンゴ幼生の定着が多く、生きた細菌を含む生物活性コーティングを組み合わせると効果が高まった。また、音を流した場所では、対照地点に比べて魚類幼生が全体で4~14倍多く確認された。魚は藻類を食べ、サンゴ幼生の成長を助けるため、両者を呼び寄せる技術は生態系回復に相乗効果をもたらす可能性がある。研究チームは、音響技術を3Dプリント構造物や生体材料と組み合わせ、沿岸防護と生態系再生を両立する「ハイブリッド礁」への応用を目指している。

健全なサンゴ礁の音がサンゴと魚の回復を促進(Healthy Reef Sounds Can Boost Coral and Fish Recovery Efforts)
Compilation image showing views of the experiment site, including underwater perspectives (A, B, C) and an aerial view of Moku o Loʻe (D). Equipment shown in the upper-left includes autonomous cameras, coral settlement and fish habitat modules, microhabitat cinder blocks, a hydrophone and a speaker. Credit: Océane Boulais

<関連情報>

音響強化、人工生息地、生体材料を用いたサンゴ幼生の定着の現場強化 In situ enhancement of coral larval settlement using acoustic enrichment, engineered habitats and living materials

Aaron Thode, Natalie Levy, Océane Boulais, Samapti Kundu, Marnie Freckelton, Daniel Schar, Michael Hadfield, Jessica Reichert, Hendrikje Jorissen, Netanel Kramer, Joshua Levy, Kira Hughes, the R3D consortium, Joshua Madin & Daniel Wangpraseurt
Communications Biology  Published:08 October 2026
DOI:https://doi.org/10.1038/s42003-026-10932-3

Abstract

Worldwide reef ecosystem degradation is inspiring efforts to enhance in-situ coral larvae settlement onto degraded or artificial reefs. Here we simultaneously test three approaches for enhancing settlement over two weeks in Kāne’ohe Bay, O’ahu, Hawai’i. Nineteen artificial structures, mimicking natural reef mesoscale roughness, were deployed along two transect lines at distances between 1 and 42 m from an “acoustic enrichment” underwater speaker broadcasting healthy reef sound. Twelve additional cinder blocks supporting micro-habitat structures designed to attenuate flow were also deployed at various distances. Some micro-habitats were coated with a living bacteria reef ink (Brink) to further induce larval settlement. Statistical regressions identify Brink presence, structure type, and speaker distance to 20 m as significant factors in predicting coral larval settlement density, but conclusions about acoustic enrichment efficacy are tentative. The cumulative effects of acoustic enrichment, living microbial materials, and custom-designed habitats on enhancing in-situ larval settlement justify further scaled-up reef restoration trials.

生物環境工学
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