Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences , Beijing 100085, China.
School of Environmental Science and Technology, Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), Dalian University of Technology , Dalian 116024, China.
Environ Sci Technol. 2018 Feb 6;52(3):1262-1269. doi: 10.1021/acs.est.7b05014. Epub 2018 Jan 26.
Interactions between microbes and micropollutants (MPs) play a crucial role in water purification or treatment. Current studies have generally focused on the direct degradation or cometabolism of MPs. Considering the increasing interest in and importance of the roles of MPs in microbial metabolism, we adopted an Mn(II)-oxidizing Pseudomonas sp. QJX-1 using tyrosine (Tyr) as the sole carbon and nitrogen source to investigate the effects of seven MPs on its growth and function. Six MPs exhibited an inhibition effect on bacterial growth and Mn(II) oxidation. Only benzophenone-4 (BP-4) promoted the growth of QJX-1 and biogenic oxidation Mn(II), but its concentration was not directly coupled to growth, which was unexpected. RNA-seq data suggested that the addition of BP-4 did not significantly change the basic metabolic function of QJX-1, but stimulated the upregulation of the pyruvate and gluconeogenesis metabolic pathways of Tyr for QJX-1 growth. Furthermore, protein identification and extracellular superoxide detection indicated that Mn(II) oxidation was largely driven by the formation of superoxide in response to Tyr starvation; the acceleration of superoxide production, due to BP-4 accelerating Tyr consumption, was responsible for the promotion effect of BP-4 on QJX-1 Mn(II) oxidation. Our findings highlight the dual effects that MPs can have on the growth and function of a single strain in aquatic ecosystem, i.e., the coexistence of inhibition and promotion.
微生物与微污染物(MPs)之间的相互作用在水的净化或处理中起着至关重要的作用。目前的研究通常集中在 MPs 的直接降解或共代谢上。考虑到人们对 MPs 在微生物代谢中的作用的兴趣和重要性日益增加,我们采用了一种以酪氨酸(Tyr)为唯一碳源和氮源的 Mn(II)氧化假单胞菌 QJX-1,来研究七种 MPs 对其生长和功能的影响。六种 MPs 对细菌生长和 Mn(II)氧化表现出抑制作用。只有二苯甲酮-4(BP-4)促进了 QJX-1 的生长和生物氧化 Mn(II),但其浓度与生长没有直接关联,这是出乎意料的。RNA-seq 数据表明,添加 BP-4 并没有显著改变 QJX-1 的基本代谢功能,但刺激了 Tyr 生长的丙酮酸和糖异生代谢途径的上调。此外,蛋白质鉴定和细胞外超氧化物检测表明,Mn(II)氧化主要是由 Tyr 饥饿引起的超氧化物形成驱动的;由于 BP-4 加速了 Tyr 的消耗,加速了超氧化物的产生,这是 BP-4 对 QJX-1 Mn(II)氧化促进作用的原因。我们的研究结果强调了 MPs 对水生生态系统中单种菌株生长和功能的双重影响,即抑制和促进的共存。