CAS Key Laboratory of Tropical Marine Bio-resources and Ecology and Guangdong Provincial Key Laboratory of Applied Marine Biology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, China.
Innovation Academy of South China Sea Ecology and Environmental Engineering, Chinese Academy of Sciences, ISEE, CAS, Guangzhou, China.
Microb Ecol. 2021 Oct;82(3):572-580. doi: 10.1007/s00248-021-01690-2. Epub 2021 Feb 12.
Reef-building corals are inhabited by functionally diverse microorganisms which play important roles in coral health and persistence in the Anthropocene. However, our understanding of the complex associations within coral holobionts is largely limited, particularly transgenerational exposure to environmental stress, like ocean acidification. Here we investigated the microbiome development of an ecologically important coral Pocillopora damicornis following transgenerational exposure to moderate and high pCO (partial pressure of CO) levels, using amplicon sequencing and analysis. Our results showed that the Symbiodiniaceae community structures in adult and juvenile had similar patterns, all of which were dominated by Durusdinium spp., previously known as clade D. Conversely, prokaryotic communities varied between adults and juveniles, possibly driven by the effect of host development. Surprisingly, there were no significant changes in both Symbiodiniaceae and prokaryotic communities with different pCO treatments, which was independent of the life history stage. This study shows that ocean acidification has no significant effect on P. damicornis microbiome, and warrants further research to test whether transgenerational acclimation exists in coral holobiont to projected future climate change.
造礁珊瑚体内栖息着功能多样的微生物,这些微生物在人类世中对珊瑚的健康和存续起着重要作用。然而,我们对珊瑚整体共生体内部复杂的相互关系的理解还很有限,特别是对代际暴露于环境压力(如海洋酸化)的理解。在这里,我们通过扩增子测序和分析,研究了在经历代际暴露于中等和高 pCO(二氧化碳分压)水平后,生态重要珊瑚物种 P. damicornis 的微生物组发育。我们的研究结果表明,成年珊瑚和幼体珊瑚中的共生藻(Symbiodiniaceae)群落结构具有相似的模式,均以 Durusdinium spp. 为主,此前被归类为 D 群。相反,成体和幼体珊瑚中的原核生物群落存在差异,这可能是由宿主发育的影响所驱动。令人惊讶的是,不同 pCO 处理对 Symbiodiniaceae 和原核生物群落都没有显著影响,这与生活史阶段无关。本研究表明,海洋酸化对 P. damicornis 的微生物组没有显著影响,但需要进一步研究来检验珊瑚整体共生体是否存在对未来气候变化的世代适应。