Liu Xiaowei, Wang Huixiang, Li Lanlan, Deng Chengxun, Chen Yihan, Ding Haitao, Yu Zhimin
School of Biology, Food, and Environment, Hefei University, Hefei 230601, China; International (Sino-German) Joint Research Center for Biomass of Anhui Province, Hefei 230601, China.
School of Resources and Environmental Engineering, Hefei University of Technology, Hefei 230009, China.
J Hazard Mater. 2022 Feb 15;424(Pt A):127285. doi: 10.1016/j.jhazmat.2021.127285. Epub 2021 Sep 20.
Microplastic (MP) biofilms with heterogeneous bacterial compositions and structure have become a hotspot of antibiotic resistance genes (ARGs) in aquatic environments. The evolutionary features of ARGs and their related factors including class 1 integron (intI1), metal resistance genes (MRGs), and bacterial communities in MP biofilms under exogenous pressures and how they compared with natural substrates (NS) are unclear. The individual and combined pressures of sulfamethoxazole, tetracycline, and zinc were used to drive the dynamic evolution of ARGs, intI1, MRGs, and bacterial communities in the MP and NS biofilms. The exogenous pressures from the combined selection of sulfamethoxazole, tetracycline, and zinc and their increasing concentrations both significantly enhanced the abundances of ARGs on the MP compared to the NS. Meanwhile, the selective pressures resulted in obvious dissimilarities between the MP and NS bacterial communities. The core bacterial taxa and the co-occurrence patterns of ARGs and bacterial genera in the biofilms of MP and NS were obviously different, and more potential ARG host bacteria selectively colonized the MP. Metal pressure also enhanced the enrichment of ARGs in the MP biofilms by promoting the spread of intI1 via the co-selection mechanism.
具有异质细菌组成和结构的微塑料(MP)生物膜已成为水生环境中抗生素抗性基因(ARG)的热点。在外部压力下,MP生物膜中ARG的进化特征及其相关因素,包括1类整合子(intI1)、金属抗性基因(MRG)和细菌群落,以及它们与天然底物(NS)的比较尚不清楚。使用磺胺甲恶唑、四环素和锌的单独及联合压力来驱动MP和NS生物膜中ARG、intI1、MRG和细菌群落的动态进化。与NS相比,磺胺甲恶唑、四环素和锌联合选择产生的外部压力及其浓度增加均显著提高了MP上ARG的丰度。同时,选择压力导致MP和NS细菌群落之间存在明显差异。MP和NS生物膜中核心细菌类群以及ARG与细菌属的共现模式明显不同,更多潜在的ARG宿主细菌选择性地定殖在MP上。金属压力还通过共选择机制促进intI1的传播,从而增强了MP生物膜中ARG的富集。