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Diel metabolomics analysis of a hot spring chlorophototrophic microbial mat leads to new hypotheses of community member metabolisms

机译:温泉的氯代营养微生物垫的Diel代谢组学分析导致​​新的社区成员代谢假说

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摘要

Dynamic environmental factors such as light, nutrients, salt, and temperature continuously affect chlorophototrophic microbial mats, requiring adaptive and acclimative responses to stabilize composition and function. Quantitative metabolomics analysis can provide insights into metabolite dynamics for understanding community response to such changing environmental conditions. In this study, we quantified volatile organic acids, polar metabolites (amino acids, glycolytic and citric acid cycle intermediates, nucleobases, nucleosides, and sugars), wax esters, and polyhydroxyalkanoates, resulting in the identification of 104 metabolites and related molecules in thermal chlorophototrophic microbial mat cores collected over a diel cycle in Mushroom Spring, Yellowstone National Park. A limited number of predominant taxa inhabit this community and their functional potentials have been previously identified through metagenomic and metatranscriptomic analyses and in situ metabolisms, and metabolic interactions among these taxa have been hypothesized. Our metabolomics results confirmed the diel cycling of photorespiration (e.g., glycolate) and fermentation (e.g., acetate, propionate, and lactate) products, the carbon storage polymers polyhydroxyalkanoates, and dissolved gasses (e.g., H2 and CO2) in the waters overlying the mat, which were hypothesized to occur in major mat chlorophototrophic community members. In addition, we have formulated the following new hypotheses: (1) the morning hours are a time of biosynthesis of amino acids, DNA, and RNA; (2) photo-inhibited cells may also produce lactate via fermentation as an alternate metabolism; (3) glycolate and lactate are exchanged among Synechococcus and Roseiflexus spp.; and (4) fluctuations in many metabolite pools (e.g., wax esters) at different times of day result from species found at different depths within the mat responding to temporal differences in their niches.
机译:诸如光,营养,盐和温度之类的动态环境因素持续影响绿光化微生物垫,需要适应性和适应性响应来稳定组成和功能。定量代谢组学分析可以深入了解代谢物动力学,以了解社区对这种不断变化的环境条件的反应。在这项研究中,我们对挥发性有机酸,极性代谢物(氨基酸,糖酵解和柠檬酸循环中间体,核碱基,核苷和糖),蜡酯和聚羟基链烷酸酯进行了定量,从而鉴定了热氯光养性中的104种代谢物和相关分子。黄石国家公园蘑菇泉在diel周期内收集的微生物垫芯。先前已经通过宏基因组学和元转录组学分析和原位代谢确定了数量有限的优势类群居住在该社区中,并确定了它们的功能潜力,并假设了这些类群之间的代谢相互作用。我们的代谢组学结果证实了光呼吸(例如,乙醇酸)和发酵(例如,乙酸盐,丙酸和乳酸),碳存储聚合物,聚羟基链烷酸酯以及溶解在垫子上的水中的溶解气体(例如,H2和CO2)的diel循环,据推测发生在主要的垫层氯营养族成员中。此外,我们提出了以下新的假设:(1)早上是生物合成氨基酸,DNA和RNA的时间; (2)受光抑制的细胞也可以通过发酵产生乳酸,作为另一种新陈代谢; (3)乙醇酸和乳酸在乳突球菌和玫瑰糖菌之间交换。 (4)一天中不同时间在许多代谢物库(例如蜡酯)中的波动是由于在垫子内不同深度处发现的物种对它们的生态位的时间差异做出了响应。

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