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Diel Variations in Carbon Metabolism by Green Nonsulfur-Like Bacteria in Alkaline Siliceous Hot Spring Microbial Mats from Yellowstone National Park

机译:黄石国家公园碱性硅质温泉微生物垫中绿色类非硫细菌的碳代谢的狄尔变化

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摘要

Green nonsulfur-like bacteria (GNSLB) in hot spring microbial mats are thought to be mainly photoheterotrophic, using cyanobacterial metabolites as carbon sources. However, the stable carbon isotopic composition of typical Chloroflexus and Roseiflexus lipids suggests photoautotrophic metabolism of GNSLB. One possible explanation for this apparent discrepancy might be that GNSLB fix inorganic carbon only during certain times of the day. In order to study temporal variability in carbon metabolism by GNSLB, labeling experiments with [13C]bicarbonate, [14C]bicarbonate, and [13C]acetate were performed during different times of the day. [14C]bicarbonate labeling indicated that during the morning, incorporation of label was light dependent and that both cyanobacteria and GNSLB were involved in bicarbonate uptake. 13C-labeling experiments indicated that during the morning, GNSLB incorporated labeled bicarbonate at least to the same degree as cyanobacteria. The incorporation of [13C]bicarbonate into specific lipids could be stimulated by the addition of sulfide or hydrogen, which both were present in the morning photic zone. The results suggest that GNSLB have the potential for photoautotrophic metabolism during low-light periods. In high-light periods, inorganic carbon was incorporated primarily into Cyanobacteria-specific lipids. The results of a pulse-labeling experiment were consistent with overnight transfer of label to GNSLB, which could be interrupted by the addition of unlabeled acetate and glycolate. In addition, we observed direct incorporation of [13C]acetate into GNSLB lipids in the morning. This suggests that GNSLB also have a potential for photoheterotrophy in situ.
机译:温泉微生物垫中的绿色非硫磺样细菌(GNSLB)被认为主要是光异养性的,使用蓝细菌代谢物作为碳源。然而,典型的绿屈挠脂和迷红脂脂质的稳定的碳同位素组成表明GNSLB具有光自养性代谢。对于这种明显差异的一种可能的解释可能是,GNSLB仅在一天中的特定时间固定无机碳。为了研究GNSLB碳代谢的时间变异性,在一天的不同时间进行了[13C]碳酸氢盐,[14C]碳酸氢盐和[13C]乙酸盐的标记实验。 [14C]碳酸氢盐标记表明,在早晨,标记的掺入对光有依赖性,并且蓝细菌和GNSLB均参与碳酸氢盐的吸收。 13 C-标记实验表明,早晨,GNSLB掺入标记的碳酸氢盐的程度至少与蓝细菌相同。可以通过添加硫化物或氢来刺激将[13C]碳酸氢盐掺入特定的脂质中,这两种物质都存在于早晨的光区中。结果表明,GNSSB在弱光条件下具有光自养代谢的潜力。在强光照射下,无机碳主要掺入蓝细菌特有的脂质中。脉冲标记实验的结果与标记向GNSLB的过夜转移是一致的,这可以通过添加未标记的乙酸盐和乙醇酸盐来中断。此外,我们观察到早晨将[13C]乙酸酯直接掺入GNSLB脂质中。这表明GNSLB也具有原位光异养的潜力。

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