State Key Laboratory of Urban Water Resources and Environment, School of Environment, Harbin Institute of Technology, Harbin, China.
College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao, China.
J Environ Sci Health B. 2020;55(9):854-863. doi: 10.1080/03601234.2020.1788337. Epub 2020 Jul 10.
Tylosin fermentation dregs (TFDs) are biosolid waste of antibiotics tylosin production process which contain nutritious components and may be recycled as soil amendments. However, the specific ecological safety of TFDs from the perspective of bacterial resistance in soil microenvironment is not fully explored. In the present study, a series of replicated lab-scale work were performed using the simulated fertilization to gain insight into the potential environmental effects and risks of macrolide antibiotic resistance genes (ARGs) and the soil microbial communities composition via quantitative PCR and 16S rRNA sequencing following the TFDs land application as the soil amendments. The results showed that bio-processes might play an important role in the decomposition of tylosin which degraded above 90% after 20 days in soil. The application of TFDs might induce the development of antibiotic-resistant bacteria, change soil environment and reduce the microbial diversity. Though the abundances of macrolide ARGs exhibited a decreasing trend following the tylosin degradation, other components in TFDs may have a lasting impact on both macrolide ARGs abundance and soil bacterial communities. Thus, this study pointed out the fate of TFDs on soil ecological environment when directly applying into soil, and provide valuable scientific basis for TFDs management.
泰乐菌素发酵废渣(TFD)是泰乐菌素生产过程中的生物固体废物,含有营养成分,可以回收用作土壤改良剂。然而,从土壤微环境中细菌抗性的角度来看,TFD 的具体生态安全性尚未得到充分探索。在本研究中,采用模拟施肥的一系列重复实验室规模的工作,通过定量 PCR 和 16S rRNA 测序,深入了解泰乐菌素发酵废渣作为土壤改良剂施入土壤后,大环内酯类抗生素抗性基因(ARGs)和土壤微生物群落组成的潜在环境影响和风险。结果表明,生物过程可能在泰乐菌素的分解中发挥重要作用,在土壤中 20 天后,泰乐菌素的降解率超过 90%。TFD 的应用可能会诱导抗生素抗性细菌的产生,改变土壤环境并降低微生物多样性。尽管随着泰乐菌素的降解,大环内酯类 ARGs 的丰度呈下降趋势,但 TFDs 中的其他成分可能对大环内酯类 ARGs 丰度和土壤细菌群落产生持久影响。因此,本研究指出了 TFDs 直接施入土壤对土壤生态环境的影响,为 TFDs 的管理提供了有价值的科学依据。