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解析珊瑚 Galaxea fascicularis 中依赖 pH 的微生物分类群和功能基因的共现关系。

Deciphering pH-dependent microbial taxa and functional gene co-occurrence in the coral Galaxea fascicularis.

机构信息

Fujian Provincial Key Laboratory on Conservation and Sustainable Utilization of Marine Biodiversity, Fuzhou Institute of Oceanography, Minjiang University, Fuzhou, 350108, China.

Technology Innovation Center for Monitoring and Restoration Engineering of Ecological Fragile Zone in Southeast China, Ministry of Natural Resources, Fuzhou, 350001, China.

出版信息

Microb Ecol. 2023 Oct;86(3):1856-1868. doi: 10.1007/s00248-023-02183-0. Epub 2023 Jan 31.

Abstract

How the coral microbiome responds to oceanic pH changes due to anthropogenic climate change, including ocean acidification and deliberate artificial alkalization, remains an open question. Here, we applied a 16S profile and GeoChip approach to microbial taxonomic and gene functional landscapes in the coral Galaxea fascicularis under three pH levels (7.85, 8.15, and 8.45) and tested the influence of pH changes on the cell growth of several coral-associated strains and bacterial populations. Statistical analysis of GeoChip-based data suggested that both ocean acidification and alkalization destabilized functional cores related to aromatic degradation, carbon degradation, carbon fixation, stress response, and antibiotic biosynthesis in the microbiome, which are related to holobiont carbon cycling and health. The taxonomic analysis revealed that bacterial species richness was not significantly different among the three pH treatments, but the community compositions were significantly distinct. Acute seawater alkalization leads to an increase in pathogens as well as a stronger taxonomic shift than acidification, which is worth considering when using artificial ocean alkalization to protect coral ecosystems from ocean acidification. In addition, our co-occurrence network analysis reflected microbial community and functional shifts in response to pH change cues, which will further help to understand the functional ecological role of the microbiome in coral resilience.

摘要

珊瑚微生物组如何响应人为气候变化引起的海洋 pH 值变化,包括海洋酸化和故意的人工碱化,这仍然是一个悬而未决的问题。在这里,我们应用 16S 谱和 GeoChip 方法研究了三种 pH 值(7.85、8.15 和 8.45)下珊瑚 Galaxea fascicularis 的微生物分类和基因功能景观,并测试了 pH 值变化对几种珊瑚相关菌株和细菌种群细胞生长的影响。基于 GeoChip 的数据分析表明,海洋酸化和碱化都破坏了微生物组中与芳香族降解、碳降解、碳固定、应激反应和抗生素生物合成相关的功能核心,这些功能与共生体的碳循环和健康有关。分类分析表明,三种 pH 值处理之间的细菌物种丰富度没有显著差异,但群落组成有显著差异。急性海水碱化会导致病原体增加,并且比酸化引起更大的分类转变,这在使用人工海洋碱化来保护珊瑚生态系统免受海洋酸化时值得考虑。此外,我们的共现网络分析反映了微生物群落和功能对 pH 值变化的响应,这将进一步帮助理解微生物组在珊瑚恢复力中的功能生态作用。

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