Center for Microbial Ecology and Technology (CMET), Ghent University , Coupure Links 653, 9000 Gent, Belgium.
Research Group of Sustainable Energy, Air and Water Technology, Department of Bioscience Engineering, University of Antwerp , Groenenborgerlaan 171, 2020 Antwerpen, Belgium.
Environ Sci Technol. 2017 Nov 21;51(22):13335-13343. doi: 10.1021/acs.est.7b03829. Epub 2017 Nov 9.
Human urine contains a high concentration of nitrogen and is therefore an interesting source for nutrient recovery. Ureolysis is a key requirement in many processes aiming at nitrogen recovery from urine. Although ureolytic activity is widespread in terrestrial and aquatic environments, very little is known about the urease activity and regulation in specific bacteria other than human pathogens. Given the relatively high salt concentration of urine, marine bacteria would be particularly well suited for biotechnological applications involving nitrogen recovery from urine, and therefore, in this study, we investigated ureolytic activity and its regulation in marine vibrios. Thirteen out of 14 strains showed ureolytic activity. The urease activity was induced by urea, since complete and very rapid hydrolysis, up to 4 g L h of urea, was observed in synthetic human urine when the bacteria were pretreated with 10 g L urea, whereas slow hydrolysis occurred when they were pretreated with 1 g L urea (14-35% hydrolysis after 2 days). There was no correlation between biofilm formation and motility on one hand, and ureolysis on the other hand, and biofilm and motility inhibitors did not affect ureolysis. Together, our data demonstrate for the first time the potential of marine vibrios as fast urea hydrolyzers for biotechnological applications aiming at nutrient recovery from human urine.
人尿中含有高浓度的氮,因此是回收营养物质的有趣来源。脲酶解作用是许多旨在从尿液中回收氮的过程的关键要求。尽管脲酶解活性在陆地和水生环境中广泛存在,但对于人类病原体以外的特定细菌中的脲酶活性及其调节知之甚少。鉴于尿液中的盐分浓度相对较高,海洋细菌特别适合涉及从尿液中回收氮的生物技术应用,因此在这项研究中,我们研究了海洋弧菌中的脲酶解活性及其调节。在 14 株中有 13 株具有脲酶解活性。由于在合成的人尿中,当用 10 g/L 的尿素预处理细菌时,观察到完全且非常快速的水解,达到 4 g/L/h 的尿素,而当用 1 g/L 的尿素预处理时,水解缓慢(2 天后水解 14-35%),因此尿素诱导了脲酶活性。生物膜形成和运动性与脲酶解活性之间没有相关性,并且生物膜和运动性抑制剂也不会影响脲酶解。总的来说,我们的数据首次证明了海洋弧菌作为快速尿素水解菌的潜力,可用于从人尿中回收营养物质的生物技术应用。