Zhang Man, Huang Shan, Luo Li, Yu Kefu
Guangxi Laboratory on the Study of Coral Reefs in the South China Sea, Coral Reef Research Center of China, School of Marine Sciences, Guangxi University, Nanning, 530004, PR China.
Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou, 511458, PR China.
BMC Genomics. 2025 May 14;26(1):483. doi: 10.1186/s12864-025-11660-4.
Coral reefs are being increasingly threatened due to global climate change. However, some coral species have shown strong tolerance despite living in marginal environments. The species Pavona decussata from Weizhou Island in the South China Sea experiences subaerial exposure in summer and winter due to extreme low tides, and their environmental acclimatization to this aerial exposure remains unexplored.
Here we aimed to explore the molecular mechanism of P. decussata under season or subaerial exposure background through physiological and multi-omics integrative analyses. Specifically, corals with a history of seasonal air exposure underwent comprehensive changes in energy metabolism and defense mechanisms compared to permanently submerged corals. In summer, corals experiencing subaerial exposure enhanced antioxidant defense by increasing the activities of the enzymes T-SOD and CAT, and the coral-associated bacterial community shifted toward the class Alphaproteobacteria that may have provided corals with resistance to environmental stresses. Moreover, the decrease in the transcript levels of the TCA cycle and the increase in metabolite content of ornithine suggested an alteration in energy metabolic pathways. Corals with an air-exposed background may have enhanced energy reserves in winter, as indicated by a higher content of Chl a and a rebound in coral-associated bacterial community toward the class Gammaproteobacteria. Furthermore, accumulation of the metabolite leukotriene D4 and activation of the TGF-beta signaling pathway suggested higher anti-inflammatory requirements and positive regulation by innate immunity.
This study provides insights into the acclimatization of P. decussata to seasonal environmental fluctuations and demonstrates that relatively high-latitude corals possess the plasticity and acclimatory capacity to adapt to marginal environments.
由于全球气候变化,珊瑚礁正受到越来越大的威胁。然而,一些珊瑚物种尽管生活在边缘环境中,却表现出很强的耐受性。中国南海涠洲岛的十字牡丹珊瑚(Pavona decussata)由于极端低潮,在夏季和冬季会经历潮上暴露,但其对这种潮上暴露的环境适应性仍未得到探索。
在这里,我们旨在通过生理和多组学综合分析,探索十字牡丹珊瑚在季节或潮上暴露背景下的分子机制。具体而言,与永久浸没的珊瑚相比,经历季节性空气暴露的珊瑚在能量代谢和防御机制方面发生了全面变化。在夏季,经历潮上暴露的珊瑚通过增加T-SOD和CAT酶的活性来增强抗氧化防御,并且与珊瑚相关的细菌群落向α-变形菌纲转变,这可能为珊瑚提供了对环境压力的抗性。此外,三羧酸循环转录水平的降低和鸟氨酸代谢物含量的增加表明能量代谢途径发生了改变。有空气暴露背景的珊瑚在冬季可能增强了能量储备,这表现为叶绿素a含量较高以及与珊瑚相关的细菌群落向γ-变形菌纲反弹。此外,代谢物白三烯D4的积累和TGF-β信号通路的激活表明更高的抗炎需求和先天免疫的正向调节。
本研究为十字牡丹珊瑚对季节性环境波动的适应性提供了见解,并表明相对高纬度的珊瑚具有适应边缘环境的可塑性和适应能力。