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中光层珍稀红珊瑚红珊瑚对热异常的共生体反应。

Holobiont responses of mesophotic precious red coral Corallium rubrum to thermal anomalies.

作者信息

Tignat-Perrier Romie, van de Water Jeroen A J M, Allemand Denis, Ferrier-Pagès Christine

机构信息

Unité de Recherche sur la Biologie des Coraux Précieux CSM-CHANEL, Centre Scientifique de Monaco, 8 Quai Antoine 1er, 98000, Monaco, Principality of Monaco.

Coral Ecophysiology Laboratory, Centre Scientifique de Monaco, 8 Quai Antoine 1er, 98000, Monaco, Principality of Monaco.

出版信息

Environ Microbiome. 2023 Aug 14;18(1):70. doi: 10.1186/s40793-023-00525-6.

Abstract

Marine heat waves (MHWs) have increased in frequency and intensity worldwide, causing mass mortality of benthic organisms and loss of biodiversity in shallow waters. The Mediterranean Sea is no exception, with shallow populations of habitat-forming octocorals facing the threat of local extinction. The mesophotic zone, which is less affected by MHWs, may be of ecological importance in conservation strategies for these species. However, our understanding of the response of mesophotic octocoral holobionts to changes in seawater temperature remains limited. To address this knowledge gap, we conducted a study on an iconic Mediterranean octocoral, the red coral Corallium rubrum sampled at 60 m depth and 15 °C. We exposed the colonies to temperatures they occasionally experience (18 °C) and temperatures that could occur at the end of the century if global warming continues (21 °C). We also tested their response to extremely cold and warm temperatures (12 °C and 24 °C). Our results show a high tolerance of C. rubrum to a two-month long exposure to temperatures ranging from 12 to 21 °C as no colony showed signs of tissue loss, reduced feeding ability, stress-induced gene expression, or disruption of host-bacterial symbioses. At 24 °C, however, we measured a sharp decrease in the relative abundance of Spirochaetaceae, which are the predominant bacterial symbionts under healthy conditions, along with a relative increase in Vibrionaceae. Tissue loss and overexpression of the tumor necrosis factor receptor 1 gene were also observed after two weeks of exposure. In light of ongoing global warming, our study helps predict the consequences of MHWs on mesophotic coralligenous reefs and the biodiversity that depends on them.

摘要

全球范围内,海洋热浪(MHWs)的频率和强度都有所增加,导致浅水区底栖生物大量死亡和生物多样性丧失。地中海也不例外,形成栖息地的八放珊瑚浅海种群面临着局部灭绝的威胁。海洋中光层受海洋热浪的影响较小,在这些物种的保护策略中可能具有重要的生态意义。然而,我们对中光层八放珊瑚共生体对海水温度变化的反应的了解仍然有限。为了填补这一知识空白,我们对一种标志性的地中海八放珊瑚——红珊瑚(Corallium rubrum)进行了研究,该珊瑚在60米深度、15°C的环境中采样。我们将珊瑚群落暴露在它们偶尔经历的温度(18°C)以及如果全球变暖持续到本世纪末可能出现的温度(21°C)下。我们还测试了它们对极冷和极热温度(12°C和24°C)的反应。我们的结果表明,红珊瑚对长达两个月的12至21°C温度暴露具有很高的耐受性,因为没有一个珊瑚群落出现组织损失、摄食能力下降、应激诱导基因表达或宿主-细菌共生关系破坏的迹象。然而,在24°C时,我们测量到在健康条件下占主导地位的细菌共生体螺旋体科的相对丰度急剧下降,同时弧菌科的相对丰度增加。在暴露两周后,还观察到组织损失和肿瘤坏死因子受体1基因的过表达。鉴于全球变暖仍在持续,我们的研究有助于预测海洋热浪对中光层珊瑚礁和依赖它们的生物多样性的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/433b/10424431/1255806e250d/40793_2023_525_Fig1_HTML.jpg

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