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首页> 外文期刊>Frontiers in Marine Science >Extracellular Reef Metabolites Across the Protected Jardines de la Reina, Cuba Reef System
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Extracellular Reef Metabolites Across the Protected Jardines de la Reina, Cuba Reef System

机译:细胞外珊瑚礁代谢物,受保护的Jardines de la Reina,古巴礁系统

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Coral reef ecosystems are incredibly diverse marine biomes that rely on nutrient cycling by microorganisms to sustain high productivity in generally oligotrophic regions of the ocean. Understanding the composition of extracellular reef metabolites in seawater, the small organic molecules that serve as the currency for microorganisms, may provide insight into benthic-pelagic coupling as well as the complexity of nutrient cycling in coral reef ecosystems. Jardines de la Reina, Cuba is an ideal environment to examine extracellular metabolites across protected and high-quality reefs. Here, we used liquid chromatography mass spectrometry (LC-MS) to quantify specific known metabolites of interest (targeted metabolomics approach) and to survey trends in metabolite feature composition (untargeted metabolomics approach) from surface and reef depth (6 – 14 m) seawater overlying nine forereef sites in Jardines de la Reina. We found that untargeted metabolite feature composition was surprisingly similar between reef depth and surface seawater, corresponding with other biogeochemical and physicochemical measurements and suggesting that environmental conditions were largely homogenous across forereefs within Jardines de la Reina. Additionally, we quantified 32 of 53 detected metabolites using the targeted approach, including amino acids, nucleosides, vitamins, and other metabolic intermediates. Two of the quantified metabolites, riboflavin and xanthosine, displayed interesting trends by depth. Riboflavin concentrations were higher in reef depth compared to surface seawater, suggesting that riboflavin may be produced by reef organisms at depth and degraded in the surface through photochemical oxidation. Xanthosine concentrations were significantly higher in surface reef seawater. 5?-methylthioadenosine (MTA) concentrations increased significantly within the central region of the archipelago, displaying biogeographic patterns that warrant further investigation. Here we lay the groundwork for future investigations of variations in metabolite composition across reefs, sources and sinks of reef metabolites, and changes in metabolites over environmental, temporal, and reef health gradients.
机译:珊瑚礁生态系统是令人难以置信的多样化海洋生物体,依赖于微生物的营养循环,以维持海洋的寡噬细胞区域的高生产率。了解海水中细胞外珊瑚礁代谢物的组成,用作微生物货币的小有机分子,可以深入了解底栖 - 胸腺偶联以及珊瑚礁生态系统中营养循环的复杂性。 Jardines de La Reina,古巴是一种理想的环境,用于检查受保护和高质量珊瑚礁的细胞外代谢物。这里,我们使用液相色谱质谱(LC-MS)来量化有趣的已知感兴趣的(靶向代谢物种方法)和从表面和珊瑚礁深度(6-14米)海水中的代谢物特征组成(未确定的代谢物种方法)的调查趋势在jardines de la reina覆盖九个前雷景点。我们发现,珊瑚礁深度和表面海水之间的未设定的代谢物特征组合物令人惊讶地相似,与其他生物地球化学和物理化学测量相对应,并表明环境条件在很大程度上在Jardines de La Reina内的前翅地均匀。另外,我们使用靶向方法定量53个检测到的代谢物,包括氨基酸,核苷,维生素和其他代谢中间体。两种量化的代谢物,核黄素和黄嘌呤,深入显示有趣的趋势。与表面海水相比,Rief Lavin浓度较高,表明核黄素可以通过光化学氧化在深度下通过珊瑚礁生物产生并在表面中降解。表面珊瑚礁海水中黄芪浓度显着高。 5α-甲基噻吩醇(MTA)浓度在群岛的中央区域内显着增加,显示有权进一步调查的生物地图案。在这里,我们为未来调查珊瑚礁代谢物的珊瑚礁,来源和陷阱的代谢物组合物的变化以及对环境,时间和珊瑚礁健康梯度的代谢物的变化来奠定基础。

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