College of Environmental Science and Engineering, Beijing Forestry University, Beijing, 100083, China.
Graduate School of International Relationship, International University of Japan, Minami Uonuma, 9497248, Japan.
Environ Sci Pollut Res Int. 2019 Nov;26(33):33953-33962. doi: 10.1007/s11356-018-2748-x. Epub 2018 Jul 24.
Glucocorticoids in sewage treatment plant effluent discharged into rivers could influence microbial community structure in river-based aquifer media and affect groundwater quality. The effect of representative natural and synthetic glucocorticoids, namely, hydrocortisone (CRL) and dexamethasone (DEX), on the microbial communities in three types of river-based aquifer media was evaluated. The aquifer media was taken from the Beijing Chaobai River (BJ), Hebei Hutuo River (HB), and Tianjin Duliujian River (TJ) and they exhibited different physicochemical and biological properties. The attenuation rates of CRL were 0.175, 0.119, and 0.096 day and for DEX were 0.222, 0.151, and 0.113 day in the media from BJ, HB, and TJ, respectively. All the attenuation rates followed first-order kinetics. The biodiversity decreased significantly with CRL and DEX amendment. The microbial community composition differed in relation to the type of aquifer media and glucocorticoids, especially for BJ at the phylum level. In BJ, the major bacterial genus was Bacillus and in HB it was Rhodobacter. However, in TJ, three bacterial genera (Methylophilus, Methylobacillus, and Methylotenera) and Candidatus_Nitrososphaera were predominant in the microflora. All these genera were able to degrade both CRL and DEX. Distance-based redundancy analysis revealed that total organic carbon (TOC), the type of glucocorticoid, and the pH were the main factors explaining the variations in microbial community composition.
污水处理厂排放到河流中的糖皮质激素可能会影响基于河流的含水层介质中的微生物群落结构,并影响地下水质量。评估了代表性的天然和合成糖皮质激素,即氢化可的松(CRL)和地塞米松(DEX),对三种基于河流的含水层介质中微生物群落的影响。含水层介质取自北京潮白河(BJ)、河北滹沱河(HB)和天津独流减河(TJ),它们具有不同的物理化学和生物特性。在 BJ、HB 和 TJ 的介质中,CRL 的衰减率分别为 0.175、0.119 和 0.096 天,DEX 的衰减率分别为 0.222、0.151 和 0.113 天。所有衰减率均遵循一级动力学。生物多样性随着 CRL 和 DEX 的添加而显著下降。微生物群落组成因含水层介质和糖皮质激素的类型而异,尤其是在 BJ 中,在门水平上。在 BJ 中,主要细菌属是芽孢杆菌,在 HB 中是红杆菌。然而,在 TJ 中,三个细菌属(甲基单胞菌、甲基杆菌和甲基硫杆菌)和候选硝化螺旋菌是微生物区系中的主要属。所有这些属都能够降解 CRL 和 DEX。基于距离的冗余分析表明,总有机碳(TOC)、糖皮质激素的类型和 pH 是解释微生物群落组成变化的主要因素。