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Conversion of Uric Acid into Ammonium in Oil-Degrading Marine Microbial Communities: a Possible Role of Halomonads

机译:油脂降解海洋微生物群落中尿酸转化为铵盐:Halomonads的可能作用

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摘要

Uric acid is a promising hydrophobic nitrogen source for biostimulation of microbial activities in oil-impacted marine environments. This study investigated metabolic processes and microbial community changes in a series of microcosms using sediment from the Mediterranean and the Red Sea amended with ammonium and uric acid. Respiration, emulsification, ammonium and protein concentration measurements suggested a rapid production of ammonium from uric acid accompanied by the development of microbial communities containing hydrocarbonoclastic bacteria after 3 weeks of incubation. About 80 % of uric acid was converted to ammonium within the first few days of the experiment. Microbial population dynamics were investigated by Ribosomal Intergenic Spacer Analysis and Illumina sequencing as well as by culture-based techniques. Resulting data indicated that strains related to Halomonas spp. converted uric acid into ammonium, which stimulated growth of microbial consortia dominated by Alcanivorax spp. and Pseudomonas spp. Several strains of Halomonas spp. were isolated on uric acid as the sole carbon source showed location specificity. These results point towards a possible role of halomonads in the conversion of uric acid to ammonium utilized by hydrocarbonoclastic bacteria.
机译:尿酸是一种有前途的疏水氮源,可用于生物刺激油污海洋环境中的微生物活动。这项研究使用来自地中海和红海的沉积物,经铵和尿酸修正后,研究了一系列微观世界中的代谢过程和微生物群落变化。呼吸,乳化,铵和蛋白质浓度的测量表明,在孵育3周后,尿酸会快速产生铵,并伴随着含有碳氢碎裂菌的微生物群落的形成。在实验的前几天内,约80%的尿酸转化为铵。通过核糖体间基因间隔分析和Illumina测序以及基于培养的技术研究了微生物种群动态。结果数据表明菌株与嗜盐单胞菌有关。将尿酸转化成铵,从而刺激了以Alcanivorax spp为主的微生物菌群的生长。和假单胞菌属。盐单胞菌属的几种菌株。由于唯一的碳源显示出位置特异性,因此在尿酸上分离得到的分离物。这些结果表明卤代单核苷酸可能在由碎屑细菌所利用的尿酸向铵的转化中发挥作用。

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