Liu Shuzhen, Liu Bingwen, Zhu Yin, Qiu Yong, Li Bing
School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing 100083, China.
School of Environment, Tsinghua University, Beijing 100084, China.
Antibiotics (Basel). 2023 Jul 6;12(7):1154. doi: 10.3390/antibiotics12071154.
Biofilm is considered as the hotspot of antibiotic resistance gene (ARG) dissemination. Bacterial growth substrates are important factors for biofilm formation, but its spatial-temporal effects on ARG spread in biofilm is still unclear. In this study, microfluidics combined with microscopic observation were used to reveal spatial-temporal effects of bacterial growth substrates on ARG transfer at real time. The initial horizontal gene transfer events were found to be independent of substrate levels. However, subsequent transfer processes varied greatly depending on the availability of growth substrates. The proportion of transconjugants was much higher (~12%) when observed in substrate-rich regions (under the channel) at 24 h, followed by an exponential decline, with the distance far from the channel. Furthermore, three-dimensional observation revealed that vertical gene transfer influenced by the concentrations of bacterial growth substrates was important for ARG spread in biofilm. The transfer frequency was 8.2 times higher in the high substrate concentration (50×) compared to low concentration (0.5×) in simulated sewage, underscoring the substantial impact of bacterial growth substrate variability on ARG dissemination. This study is helpful for in-depth understanding of ARG dissemination through biofilms and indicates that reducing pollutant emission is important for ARG control in the environment.
生物膜被认为是抗生素抗性基因(ARG)传播的热点。细菌生长底物是生物膜形成的重要因素,但其对生物膜中ARG传播的时空影响仍不清楚。在本研究中,微流控技术与显微镜观察相结合,用于实时揭示细菌生长底物对ARG转移的时空影响。发现最初的水平基因转移事件与底物水平无关。然而,随后的转移过程根据生长底物的可用性有很大差异。在24小时时,在富含底物的区域(通道下方)观察到的接合子比例要高得多(约12%),随后随着远离通道的距离呈指数下降。此外,三维观察表明,受细菌生长底物浓度影响的垂直基因转移对生物膜中ARG的传播很重要。在模拟污水中,高底物浓度(50倍)下的转移频率比低浓度(0.5倍)高8.2倍,突出了细菌生长底物变异性对ARG传播的重大影响。本研究有助于深入了解通过生物膜的ARG传播,并表明减少污染物排放对环境中ARG的控制很重要。