利用偏移的环境线索控制造礁珊瑚的非季节产卵。

IF 3.5
Proceedings. Biological sciences Pub Date : 2025-09-01 Epub Date: 2025-09-17 DOI:10.1098/rspb.2025.1558
Lonidas Koukoumaftsis, Matthew Salmon, Glenn Everson, David J Hughes, Deepa Varkey, Andrew Heyward, Andrea Severati, Craig Humphrey
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引用次数: 0

摘要

全球气候危机加剧了制定干预措施以增强珊瑚礁生态系统复原力和恢复能力的紧迫性。然而,由于珊瑚每年大量产卵的性质,研究方案常常受到珊瑚早期生命阶段材料供应的阻碍。我们提出了“反季节”产卵的概念验证,利用水族馆控制技术诱导在长期室内水族馆中饲养的多个大堡礁(GBR)珊瑚产卵。通过应用六个月的偏移环境剖面,包括季节性温度、光周期和月球线索,我们在2022年至2023年的南方秋冬期间诱导了珊瑚的同步产卵。我们还将产卵之夜的日落时间“相移”了4个小时,为配子受精创造了一个更有利的时间窗口(即尽量减少深夜)。与野生同种鱼相比,产卵发生在满月后的夜晚(NAFM)和日落后的相似时间(TAS), 2023年的队列显示出更接近的排列。配子受精成功的品种有:千孔Acropora millepora loripes Acropora hyacinthus Acropora elseyi Acropora austera和水管Acropora Montipora aequituberculata,共产生约200万条幼虫。我们概述了珊瑚产卵同步性的环境调节的生理见解,并讨论了非季节产卵加速珊瑚研究和加强珊瑚礁恢复计划的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlled out-of-season spawning of reef-forming corals using offset environmental cues.

The global climate crisis has heightened the urgency for developing interventions to enhance resilience and recovery of coral reef ecosystems. However, research programmes are often bottlenecked by availability of coral early life stage material owing to the annual nature of coral mass spawning. We present a proof-of-concept of 'out-of-season' spawning, utilizing aquarium control technology to induce spawning in multiple Great Barrier Reef (GBR) corals held in long-term indoor aquaria. By applying a six-month offset environmental profile encompassing seasonal temperature, photoperiod and lunar cues, we induced synchronized coral spawning during austral autumn/winter between 2022 and 2023. We also 'phase-shifted' the hour of sunset by four hours on spawning nights, creating a more favourable time window (i.e. minimizing late nights) for gamete fertilization. Spawning occurred on comparable nights after full moon (NAFM) and at similar times after sunset (TAS) to wild conspecifics, with 2023 cohorts showing the closer alignment. Gamete fertilization was successful for six species: Acropora millepora, Acropora loripes, Acropora hyacinthus, Acropora elseyi, Acropora austera, and Montipora aequituberculata, producing ca 2 million larvae. We outline physiological insights into environmental regulation of coral spawning synchronicity and discuss the potential for out-of-season spawning to accelerate coral research and enhance reef restoration programmes.

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